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		    <title>PatentStorm ->  Applications -> Electrolysis: processes, compositions used therein, and methods of preparing the compositions</title>
		    <link>http://www.patentstorm.us/rss/class/applications/rss-205.xml</link>
		    <description>Recent patent applications filings in USPTO Class 205 Electrolysis: processes, compositions used therein, and methods of preparing the compositions.</description>
		    <pubDate>Thu, 16 Feb 2012 15:00:27</pubDate>
		    <managingEditor>patents@patentstorm.us</managingEditor>
		    <language>en</language><item>
			         <title><![CDATA[IMPLANT AND METHOD FOR THE PRODUCTION THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120041541/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041541</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Wittchow, Eric; Bayer, Ullrich; Baader, Felix</li></ul>An implant, in particular an intraluminal endoprosthesis, having an implant body (<b>2, 4</b>) containing an aluminum compound, preferably an aluminum alloy and/or aluminum oxide. Improved biocompatibility of the implant is achieved in that at least the part of the surface of the implant body (<b>2, 4</b>) which is formed by the aluminum compound has a first layer (<b>6</b>) which contains an aluminum phosphate. Furthermore, a cost-effective method for producing such an implant is ...<br />]]></description>		         
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			         <title><![CDATA[ON-BOARD CONTROL DETECTION]]></title>
			         <link>http://www.patentstorm.us/applications/20120040369/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040369</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Newman, Peter Michael; Hodges, Alastair M.</li></ul>Embodiments disclosed herein relate to a sensor comprising an on-board control system and a testing system. The on-board system can determine viability of the control system or the testing system. Also disclosed are methods of using such a ...<br />]]></description>		         
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			         <title><![CDATA[BIFUNCTIONAL (RECHARGEABLE) AIR ELECTRODES]]></title>
			         <link>http://www.patentstorm.us/applications/20120040254/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040254</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Binder, Michael; Sharp-Goldman, Stefanie; Black, Phillip J.; Amendola, Steven; Johnson, Lois; Kunz, Michael; Oster, Michael; Chciuk, Tesia; Johnson, Regan</li></ul>Performance, properties and stability of bifunctional air electrodes may be improved by using modified current collectors, and improving water wettability of air electrode structures. This invention provides information on creating non-corroding, electrically rechargeable, bifunctional air electrodes. In some embodiments, this bifunctional air electrode includes a corrosion-resistant outer layer and an electrically conductive inner layer. In some embodiments, this bifunctional air electrode ...<br />]]></description>		         
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			         <title><![CDATA[Fiber Electrode for Lithium Secondary Battery, Fabrication Method Therefor, and Lithium Secondary Battery Including Fiber Electrode]]></title>
			         <link>http://www.patentstorm.us/applications/20120040246/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040246</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Sakai, Tetsuo; Yao, Jinhan; Mukai, Takashi; Takasaki, Tomoaki; Tsutsumi, Kazuo; Nishimura, Kazuya</li></ul>Provided is a method for mass manufacturing, at low cost, of a fiber positive electrode for a lithium secondary battery, which has excellent charge/discharge cycle characteristics, and which is capable of charging/discharging with high current density, and a main active material of which is a lithium-doped transition metal oxide. The method includes the steps of: (a) forming a tubular coating of either a transition metal oxide or a transition metal hydroxide on a carbon fiber current collector; ...<br />]]></description>		         
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			         <title><![CDATA[COATED MAGNETIC ALLOY MATERIAL AND METHOD FOR THE MANUFACTURE THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120040202/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040202</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Gutfleisch, Oliver; Lyubina, Julia; Buschbeck, Mihaela</li></ul>The invention relates to the field of materials science and material physics and relates to a coated magnetic alloy material, which can be used, for example, as a magnetic cooling material for cooling purposes. The object of the present invention is to disclose a coated magnetic alloy material, which has improved mechanical and/or chemical properties. The object is attained with a magnetic alloy material with a NaZn<sub>13 </sub>type crystal structure and a composition according to the formula ...<br />]]></description>		         
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			         <title><![CDATA[RADIATION REFLECTION PLATE FOR LED]]></title>
			         <link>http://www.patentstorm.us/applications/20120039066/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120039066</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;HATANAKA, Yusuke; HOTTA, Yoshinori</li></ul>A radiation reflection plate for use in LEDs is a reflection plate including an aluminum alloy layer with a depth of at least 10 μm and an anodized film formed at a surface thereof. Pore portions of the anodized film have at least two layers of different refractive indices in a depth direction, and light reflection is enhanced in the anodized film. The radiation reflection plate has high heat dissipation properties and is capable of increasing the reflectance of light at desired specific ...<br />]]></description>		         
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			         <title><![CDATA[Laminate Stack Comprising Individual Soft Magnetic Sheets, Electromagnetic Actuator, Process for Their Manufacture and Use of a Soft Magnetic Laminate Stack]]></title>
			         <link>http://www.patentstorm.us/applications/20120038439/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120038439</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Gerster, Joachim; Hoehn, Herbert</li></ul>A laminate stack having individual soft magnetic sheets. The individual sheets are involutely curved in the laminate stack. Each individual sheet has a first long side, a second long side opposite the first long side, a first short side and a second short side opposite the first short side. The first long side has a recess, said recess being rectangular and equidistant from the first short side, the second short side and the second long side when the individual sheet is in its uncurved ...<br />]]></description>		         
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			         <title><![CDATA[PHOTO-SENSITIVE COMPOSITE FILM, METHOD OF FABRICATING THE SAME, AND PHOTO-SWITCHED DEVICE COMPRISING THE SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120037792/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037792</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Huang, Chen-Han; TZENG, Yon-Hua; Liu, Chih-Yi; Kyaw, Kyaw-Oo; Chui, Hsiang-Chen; Lin, Hsing-Ying</li></ul>A photo-sensitive composite film is disclosed, which includes plural metal nano-particles and a porous anodized aluminum oxide film. The nanoparticles can be hollow or solid with unrestricted shapes of varying diameters and lengths. The plural metal nanoparticles are completely contained in holes and attached to the bottom of the holes of the anodized aluminum oxide film, and the electrical conductivity of the photo-sensitive anodized aluminum oxide film can be changed by light exposure on the ...<br />]]></description>		         
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			         <title><![CDATA[HYDROGEN SENSING APPARATUS AND METHOD]]></title>
			         <link>http://www.patentstorm.us/applications/20120037516/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037516</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Schwandt, Carsten; FRAY, DEREK JOHN</li></ul>An apparatus and methods are provided for the accurate determination of hydrogen content in fluid media at elevated temperatures. The apparatus consists of a proton conducting solid electrolyte in contact with an internal metal/hydrogen reference standard, in which the electrolyte and the reference material are in a chemically stable contact. The electrical signal generated is a function of the hydrogen concentration on the measuring ...<br />]]></description>		         
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			         <title><![CDATA[IMPEDIMETRIC SENSORS USING DIELECTRIC NANOPARTICLES]]></title>
			         <link>http://www.patentstorm.us/applications/20120037515/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037515</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventor:</strong> &nbsp;Solanki, Rajendra</li></ul>A method for electrochemical impedance spectroscopy uses interdigitated electrodes functionalized with a first species and nanoparticles functionalized with a second species that preferentially attaches to the first species. The nanoparticles are composed of a material with a dielectric constant (k value) greater than 2. The chemically functionalized electrodes are then exposed to a solution containing the chemically functionalized nanoparticles which then become immobilized on the electrodes ...<br />]]></description>		         
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			         <title><![CDATA[Enzymatic Electrochemical Biosensor]]></title>
			         <link>http://www.patentstorm.us/applications/20120037514/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037514</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Blaschke, Christina; Wu, Huan-Ping; Beer, Greg P.</li></ul>An electrochemical sensor strip has a base and a first electrode and a second electrode on the base. An oxidoreductase enzyme and a mediator are on the first electrode, and a soluble redox species is on the second electrode. The soluble redox species may be an organotransition metal complex, a transition metal coordination complex, an electroactive organic molecule, or mixtures ...<br />]]></description>		         
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			         <title><![CDATA[DIAGNOSTIC MULTI-LAYER DRY PHASE TEST STRIP WITH INTEGRATED BIOSENSORS ("ELECTROSTRIP")]]></title>
			         <link>http://www.patentstorm.us/applications/20120037513/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037513</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventor:</strong> &nbsp;Lindemann, Björn F.</li></ul>A diagnostic multi-layer dry phase test strip with integrated biosensors for use in measuring more than one analyte in a fluid sample includes a body having a port for introducing a fluid sample. Within the body is a spreader layer configured to evenly spread the fluid sample received through the port. The test strip further includes at least one enzyme reaction layer in fluidic communication with the spreader layer. The test strip also includes a first electrode layer in fluidic communication ...<br />]]></description>		         
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			         <title><![CDATA[ELECTRODES FOR ELECTROLYSIS OF WATER]]></title>
			         <link>http://www.patentstorm.us/applications/20120037512/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037512</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventor:</strong> &nbsp;Robertson, Maurice James</li></ul>Electrodes for electrolysis of water, for encouraging growth of algae and aerobic bacteria, for removing suspended solids from wastewater during treatment, or for rendering water sterile and potable have a concrete coating over a metallic or carbon fibre core. The coating is from 2 to 50 mm thick; preferably 5 to 25 mm thick. Preferably, a DC current passed between the immersed electrodes periodically reversed but there is no visible “rusting” at the anode if the DC current is steady. The ...<br />]]></description>		         
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			         <title><![CDATA[SUPER-CAPACITOR DESALINATION DEVICES AND METHODS]]></title>
			         <link>http://www.patentstorm.us/applications/20120037511/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037511</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Xiong, Rihua; Cai, Wei; Yang, Hai</li></ul>A super-capacitor desalination device is described and includes a pair of terminal electrodes and at least one bipolar electrode located between the terminal electrodes. The at least one bipolar electrode has an ion exchange material disposed on opposing surfaces thereof The ion exchange material is a cation exchange material or an anion exchange material. A method for super-capacitor desalination is also ...<br />]]></description>		         
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			         <title><![CDATA[PROCESS AND APPARATUS FOR THE PREPARATION OF COMBUSTIBLE FLUID]]></title>
			         <link>http://www.patentstorm.us/applications/20120037510/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037510</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventor:</strong> &nbsp;BETHUREM, GARY J.</li></ul>A fuel and hydrogen generator includes electrolysis in a first closed vessel containing a bath of water, electrolyte and sufficient liquid hydrocarbon fuel to serve as an oxygen barrier. The hydrogen produced in the first closed vessel is introduced into a second closed vessel having a bath of water, electrolyte and liquid hydrocarbon fuel in an amount volumetrically equal to the water. Electrodes extend through the liquid hydrocarbon fuel to the water to conduct electrolysis. Makeup water and ...<br />]]></description>		         
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			         <title><![CDATA[METHOD OF ELECTROCHEMICAL MACHINING OF MATERIALS]]></title>
			         <link>http://www.patentstorm.us/applications/20120037509/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037509</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;IDRISOV, Timur Rashitovich; ZAYTSEV, Vyacheslav Alexandrovich</li></ul>The invention relates to electrochemical pulse machining (ECM) of high alloy steel, alloys and conducting composite materials that include components with substantially different electrochemical properties. In particular, the invention can be used to perform various copy-piercing operations when producing intricately shaped surfaces of machines and tools made of WC—Co, WC—TiC—Co alloys.</p>
<p id="p-0002" num="0000">The method comprises machining at low interelectrode gaps using anode or ...<br />]]></description>		         
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			         <title><![CDATA[ELECTROLYTIC RECYCLING OF COMPOUNDS]]></title>
			         <link>http://www.patentstorm.us/applications/20120034153/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120034153</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Sadoway, Donald R.; Bradwell, David J.; Osswald, Sebastian</li></ul>An electrolytic recycling method recovers two or more component elements of one or more compounds simultaneously. A compound, such as a compound semiconductor, to be recycled is dissolved in a liquid electrolyte. Electrolysis of the dissolved compound recovers component elements simultaneously at respective negative and positive electrodes by reduction and oxidation respectively. The component elements produced may be in respective condensed phases or include a gaseous ...<br />]]></description>		         
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			         <title><![CDATA[SIDE WETTABLE PLATING FOR SEMICONDUCTOR CHIP PACKAGE]]></title>
			         <link>http://www.patentstorm.us/applications/20120032352/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120032352</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventor:</strong> &nbsp;Huening, Kenneth J.</li></ul>A method for providing a semiconductor chip package with side wettable plating includes singulating a semiconductor chip package from an array of packages formed in a block format, immersing the semiconductor chip package in a bath of plating solution, contacting a lead land of the semiconductor chip package with conductive contact material within the bath of plating solution, connecting the conductive contact material to a cathode electrical potential, connecting an anode within the bath of ...<br />]]></description>		         
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			         <title><![CDATA[GRAPHENE BASED ELECTRODES FOR ELECTROCHEMICAL REACTIONS, AND ELECTROOXIDATION PROCESS FOR THE REMOVAL OF CONTAMINANTS FROM LIQUIDS USING SAID ELECTRODES]]></title>
			         <link>http://www.patentstorm.us/applications/20120031852/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031852</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventor:</strong> &nbsp;Aglietto, Ivano</li></ul>An electrode is described completely made of graphenes or containing high amounts of these compounds in mixture with nanostructured or non-nanostructured carbon-based materials. An electrooxidation process for the removal of contaminants from liquids, and a reactor for performing the process, based on the use of said electrodes, are also ...<br />]]></description>		         
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			         <title><![CDATA[CONTROL AND CALIBRATION SOLUTIONS AND METHODS FOR THEIR USE]]></title>
			         <link>http://www.patentstorm.us/applications/20120031777/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031777</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Svetnik, Vladimir; Kuhn, Lance S.; Burke, David W.; Beaty, Terry A.</li></ul>Control and calibration solutions are described that provide control and calibration data that is recognized by a test meter allowing the meter to segregate the control and calibration data from regular test data. Recognition and segregation of the control and calibration data can occur automatically with no additional input from the meter's user. Methods for use of the solutions are also ...<br />]]></description>		         
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			         <title><![CDATA[Transient Decay Amperometry]]></title>
			         <link>http://www.patentstorm.us/applications/20120031776/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031776</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Edelbrock, Andrew J.; Jung, Sung-Kwon; Charlton, Steven C.; Huang, Dijia; Wu, Huan-Ping; Chu, Amy H.</li></ul>A biosensor system determines an analyte concentration of a biological sample using an electrochemical process without Cottrell decay. The biosensor system generates an output signal having a transient decay, where the output signal is not inversely proportional to the square root of the time. The transient decay is greater or less than the −0.5 decay constant of a Cottrell decay. The transient decay may result from a relatively short incubation period, relatively small sample reservoir ...<br />]]></description>		         
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			         <title><![CDATA[PREPARATION OF MONOBASIC PHOSPHATE IONOPHORES]]></title>
			         <link>http://www.patentstorm.us/applications/20120031775/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031775</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventor:</strong> &nbsp;Ahmad, Mohd Rais</li></ul>The present invention relates to the synthesis of lipophilic or immobilized monobasic phosphate (H<sub>2</sub>PO<sub>4</sub>) ionophores (7, 8a, 8b and 11) to be used as ion recognition molecules for monobasic phosphate (H2PO<sub>4</sub>″) in the cocktail preparation of hydrophobic polymer membranes in ion selective electrode (ISE) or ion-sensitive field effect transistor (ISFET) chemical sensors for detection of monobasic phosphate (H<sub>2</sub>PO<sub>4</sub>) ionic species in soil, ...<br />]]></description>		         
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			         <title><![CDATA[ELECTRODE FOR AN ELECTROCHEMICAL DEVICE AND METHOD FOR DETECTING HYDROGEN PEROXIDE USING THE ELECTRODE]]></title>
			         <link>http://www.patentstorm.us/applications/20120031774/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031774</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Hua, Mu-Yi; Cheng, Kong-Wei; Chen, Hsiao-Chien; Tsai, Rung-Ywan</li></ul>An electrode for an electrochemical device includes a conductor, and an active layer formed on the conductor and including a polybenzimidazole polymer that contains at least one of the functional group of the following formula:</p>
<p id="p-0002" ...<br />]]></description>		         
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			         <title><![CDATA[IMMUNOASSAY METHOD AND DEVICE WITH MAGNETICALLY SUSCEPTIBLE BEAD CAPTURE]]></title>
			         <link>http://www.patentstorm.us/applications/20120031773/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031773</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventor:</strong> &nbsp;MILLER, Cary James</li></ul>The present invention provides apparatus and methods for the rapid determination of analytes in liquid samples by immunoassays incorporating magnetic capture of beads on a sensor capable of being used in the point-of-care diagnostic ...<br />]]></description>		         
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			         <title><![CDATA[HYDROGEN GENERATION]]></title>
			         <link>http://www.patentstorm.us/applications/20120031772/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031772</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;DEAN, William Francis Houlton; POWELL, Stephen Wood</li></ul>A hydrogen generator includes at least two electrolytic cells, each comprising a membrane electrode assembly incorporating a solid polymer electrolyte. The membrane electrode of a first cell is exposed to water and the hydrogen produced in this cell contacts the cathode surfaces of the successive electrolytic cells, wherein any water entrained in or carried over with the hydrogen produced in the first cell is the only significant feedstock for the successive electrolytic cells.</p>
<p ...<br />]]></description>		         
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			         <title><![CDATA[PROCESS FOR PREPARING REACTIVE ZINC BY ELECTROCHEMICAL REDUCTION]]></title>
			         <link>http://www.patentstorm.us/applications/20120031771/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031771</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Fischer, Andreas; Waters, Gerrit; Griesbach, Ulrich; Breuninger, Daniel; Malkowsky, Itamar Michael; Mirk, Daniela; Brughmans, Steven; Szarvas, Laszlo; Martin, Marc; Brueggemann, Markus</li></ul>The invention relates to a process for preparing reactive zinc by electrochemical reduction, wherein iron or steel is used as cathode ...<br />]]></description>		         
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			         <title><![CDATA[METHOD FOR REDUCING CARBON DIOXIDE]]></title>
			         <link>http://www.patentstorm.us/applications/20120031770/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031770</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Deguchi, Masahiro; Yotsuhashi, Satoshi; ZENITANI, Yuji; Taniguchi, Reiko</li></ul>The method for reducing carbon dioxide of the present invention includes a step (a) and a step (b) as follows. A step (a) of preparing an electrochemical cell. The electrochemical cell comprises a working electrode (<b>21</b>), a counter electrode (<b>23</b>) and a vessel (<b>28</b>). The vessel (<b>28</b>) stores an electrolytic solution (<b>27</b>). The working electrode (<b>21</b>) contains boron carbide. The electrolytic solution (<b>27</b>) contains carbon dioxide. The working electrode ...<br />]]></description>		         
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			         <title><![CDATA[METHOD AND DEVICE FOR CARBOXYLIC ACID PRODUCTION]]></title>
			         <link>http://www.patentstorm.us/applications/20120031769/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031769</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Bhavaraju, Sai; Duffy, Kean</li></ul>A method for producing and recovering a carboxylic acid in an electrolysis cell. The electrolysis cell is a multi-compartment electrolysis cell. The multi-compartment electrolysis cell includes an anodic compartment, a cathodic compartment, and a solid alkali ion transporting membrane (such as a NaSICON membrane). An anolyte is added to the anodic compartment. The anolyte comprises an alkali salt of a carboxylic acid, a first solvent, and a second solvent. The alkali salt of the carboxylic acid ...<br />]]></description>		         
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			         <title><![CDATA[PROCESS FOR THROUGH SILICON VIA FILLING]]></title>
			         <link>http://www.patentstorm.us/applications/20120031768/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031768</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Wang, Katie Qun; Wiley, Mark J.; Reid, Jonathan D.</li></ul>A semiconductor electroplating process deposits copper into the through silicon via hole to completely fill the through silicon via in a substantially void free is disclosed. The through silicon via may be more than about 3 micrometers in diameter and more that about 20 micrometers deep. High copper concentration and low acidity electroplating solution is used for deposition copper into the through silicon ...<br />]]></description>		         
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			         <title><![CDATA[ZINC OXIDE AND COBALT OXIDE NANOSTRUCTURES AND METHODS OF MAKING THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120031767/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031767</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventor:</strong> &nbsp;Jayaraman, Shrisudersan</li></ul>The disclosure relates to metal oxide materials with varied nanostructural morphologies. More specifically, the disclosure relates to zinc oxide and cobalt oxide nanostructures with varied morphologies. The disclosure further relates to methods of making such metal oxide ...<br />]]></description>		         
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			         <title><![CDATA[Electric Al or Al Alloy Plating Bath Using Room Temperature Molten Salt Bath and Plating Method Using the Same]]></title>
			         <link>http://www.patentstorm.us/applications/20120031766/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031766</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;INOUE, MANABU; OHNUMA, TADAHIRO; MIYADERA, TSUTOMU</li></ul>Disclosed herein is an electric Al or Al alloy plating bath which comprises (A) an aluminum halide; (B) one kind of compound or at least two kinds of compounds selected from the group consisting of N-alkylpyridinium halides, N-alkylimidazolium halides, N,N′-alkylimidazolium halides, N-alkyl-pyrazolium halides, N,N′-alkylpyrazolium halides, N-alkylpyrrolidinium halides and N,N-alkyl-pyrrolidinium halides; and (C) a high boiling point aromatic hydrocarbon solvent, wherein the molar ratio of ...<br />]]></description>		         
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			         <title><![CDATA[PROCESS FOR THE ENHANCED CORROSION PROTECTION OF VALVE METALS]]></title>
			         <link>http://www.patentstorm.us/applications/20120031765/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031765</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Curran, James; Hutchins, Stephen; Shrestha, Suman</li></ul>A process for the corrosion protection of metals such as magnesium, aluminium or titanium, where at least two steps are used, including both plasma electrolytic oxidation and chemical passivation. The combination of these two processing steps enhances the corrosion resistance performance of the surface beyond the capability of either of the steps in isolation, providing a more robust protection system. This process may be used as a corrosion protective coating in its own right, or as a ...<br />]]></description>		         
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			         <title><![CDATA[MICROCRYSTALLINE-TO-AMORPHOUS GOLD ALLOY AND PLATED FILM, AND PLATING SOLUTION FOR THOSE, AND PLATED FILM FORMATION METHOD]]></title>
			         <link>http://www.patentstorm.us/applications/20120031764/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031764</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Okinaka, Yutaka; Kato, Masaru; Osaka, Tetsuya; Iwai, Ryota; Senda, Kazutaka</li></ul>Disclosed is a microcrystalline-to-amorphous gold alloy-plated film having excellent electrical properties and excellent mechanical properties. Physical properties including both the advantageous properties of a crystalline structure and the advantageous properties of an amorphous structure can be obtained by allowing a microcrystalline phase and an amorphous phase to exist in a mixed state at a specific ratio. The average particle diameter of the microcrystals is 30 nm or smaller, the volume ...<br />]]></description>		         
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			         <title><![CDATA[SUBSTRATE FOR PRINTED WIRING BOARD, PRINTED WIRING BOARD, AND METHODS FOR PRODUCING SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120031656/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031656</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Oka, Yoshio; Kasuga, Takashi; Okuda, Yasuhiro; Okada, Issei; Mikage, Katsunari; Uenishi, Naota</li></ul>Provided are a substrate for a printed wiring board, and a printed wiring board, which are not limited in size because vacuum equipment is not necessary for the production, in which an organic adhesive is not used, and which can include a conductive layer (copper foil layer) having a sufficiently small thickness. Also provided are a method for producing the substrate for a printed wiring board, and a method for producing the printed wiring board. A substrate <b>1</b> for a printed wiring board ...<br />]]></description>		         
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			         <title><![CDATA[CIRCUIT BOARD AND MANUFACTURING METHOD THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120031652/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031652</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Lee, Chang-Ming; Yu, Cheng-Po; Liu, Wen-Fang; TSENG, TZYY-JANG</li></ul>A circuit board includes a metal pattern layer, a thermally conductive plate, an electrically insulating layer, and at least one electrically insulating material. The thermally conductive plate has a plane. The electrically insulating layer is disposed between the metal pattern layer and the plane and partially covers the plane. The electrically insulating material covers the plane where is not covered by the electrically insulating layer and touches the thermally conductive plate. The ...<br />]]></description>		         
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			         <title><![CDATA[Method for forming a plating layer and method for manufacturing a circuit board using the same]]></title>
			         <link>http://www.patentstorm.us/applications/20120031550/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031550</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Jeong, Kwang-Ok; Moon, Jeong-Ho; Park, Won-Gyu; Nam, Hyo-Seung</li></ul>A method for forming a plating layer and a method for forming a printed circuit board using the same are disclosed. The method for forming a plating layer in accordance with an embodiment of the present invention can include: providing a metal foil coated with a primer resin layer on one surface thereof, roughness formed the one surface of the primer resin layer; transcribing the primer resin layer, on which roughness is formed, to an insulation layer; reducing the primer resin layer so that an ...<br />]]></description>		         
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			         <title><![CDATA[Method and Electromagnetic Flowmeter Having Corrosion Protected Measuring Electrodes]]></title>
			         <link>http://www.patentstorm.us/applications/20120031197/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031197</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventor:</strong> &nbsp;Matzen, Steen Moellebjerg</li></ul>A system and method for corrosion protection of measuring electrodes in electromagnetic flowmeters, wherein an electromagnetic flowmeter for measuring the flow of a medium through a measuring tube comprises first and second metallic measuring electrodes arranged on opposite sides of the measuring tube and in contact with the medium. The rate of flow of the medium in the measuring tube is measurable by output signals from the measuring electrodes representative of a potential difference between ...<br />]]></description>		         
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			         <title><![CDATA[Implantable Electrode]]></title>
			         <link>http://www.patentstorm.us/applications/20120029585/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029585</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventor:</strong> &nbsp;Pickett, Christopher John</li></ul>An implantable electrode, for an implantable tissue stimulator, has an electrically conductive porous material comprising metal carbide, metal nitride, metal carbonitride, metal oxide or metal oxynitride and one or more coating layers on a surface thereof. The coating layer or at least one of the coating layers, is for contact with body tissue when the electrode is implanted. Each coating layer is an electrically conductive layer of polymer having a polypyrrole polymeric backbone or ...<br />]]></description>		         
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			         <title><![CDATA[SILANE COATING FOR MEDICAL DEVICES AND ASSOCIATED METHODS]]></title>
			         <link>http://www.patentstorm.us/applications/20120029514/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029514</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Loeser, Edward A.; Fairbourn, David C.</li></ul>A titanium electrosurgical instrument, such as a scalpel (<b>20</b>), and electrosurgical devices, e.g., needle (<b>40</b>), and Bovie tips (<b>40</b>), are provided with a silane coating (<b>30</b>) directly against the solid titanium metal (<b>26, 43, 73</b>) of the body tissue-contacting distal ends (<b>24, 47, 70</b>) thereof whereby to impart advantageous non-stick properties ...<br />]]></description>		         
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			         <title><![CDATA[IDENTIFICATION, DIAGNOSIS, AND TREATMENT OF NEUROPATHOLOGIES, NEUROTOXICITIES, TUMORS, AND BRAIN AND SPINAL CORD INJURIES USING ELECTRODES WITH MICROVOLTAMMETRY]]></title>
			         <link>http://www.patentstorm.us/applications/20120029331/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029331</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Broderick, Patricia A.; Pacia, Steven V.</li></ul>The present invention relates to devices and methods of use thereof for detection of biomolecules, in vitro, in vivo, or in situ. The invention relates to methods of diagnosing and/or treating a subject as having or being at risk of developing a disease or condition that is associated with abnormal levels of one or more biomolecules including, but not limited to, inter alia, epilepsy, diseases of the basal ganglia, athetoid, dystonic diseases, neoplasms, Parkinson's disease, brain injuries, ...<br />]]></description>		         
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			         <title><![CDATA[COMPRESSION CASING FOR A FUEL CELL STACK AND A METHOD FOR MANUFACTURING A COMPRESSION CASING FOR A FUEL CELL STACK]]></title>
			         <link>http://www.patentstorm.us/applications/20120028159/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028159</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Nielsen, Martin Refslund; Erikstrup, Niels H.B.</li></ul>A fuel cell or electrolysis cell stack has force distribution members with one planar and one convex shape applied to at least its top and bottom face and in one embodiment further to two of its side faces. A compressed mat and further a rigid fixing collar surrounds the stack and force distribution members, whereby the stack is submitted to a compression force on at least the top and bottom face and potentially also to two side faces. The assembly is substantially gas tight in an axial ...<br />]]></description>		         
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			         <title><![CDATA[PROCESS FOR ELECTROPLATING OF COPPER]]></title>
			         <link>http://www.patentstorm.us/applications/20120028073/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028073</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Starosvetsky, David; Sezin, Nina; Ein-Eli, Yair</li></ul>A process for electroplating high adhesion copper layer on a surface of a highly oxidizable metal in an invariable container, and products produced by this process are ...<br />]]></description>		         
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			         <title><![CDATA[REFERENCE ELECTRODE, ITS MANUFACTURING METHOD, AND AN ELECTROCHEMICAL CELL]]></title>
			         <link>http://www.patentstorm.us/applications/20120027926/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120027926</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Yamakawa, Yukio; Mukai, Takashi; Sakai, Tetsuo; Miyuki, Takuhiro; Honjo, Yoshiyuki; Yamasaki, Hironori</li></ul>[PROBLEM] The purpose of the present invention is to provide a reference electrode which is easy to manufacture and handle, its manufacturing method, and an electrochemical cell using this.</p>
<p id="p-0002" num="0000">[METHOD FOR SOLVING THE PROBLEM] The reference electrode <b>10</b> comprises a core material <b>11</b> extending parallel to the anode <b>14</b> or the cathode <b>16</b> from a terminal, a lithium membrane <b>12</b> coating from a tip of the core material <b>11</b> to a field ...<br />]]></description>		         
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			         <title><![CDATA[LOW VALENCE TITANIUM OXIDES AND METHOD OF PRODUCING THE SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120027668/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120027668</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Mashimo, Tsutomu; Iwasaki, Hideharu; Emil, Omurzak Uulu; Okamoto, Makoto; Yasuda, Yoshiaki; Kameyama, Naoto</li></ul>The object of the present invention is to provide a method of producing low valence titanium oxides in a steady supply manner acceptable in industrial production. The low valence titanium oxides are produced by electrical discharge between two electrodes in an aqueous medium, wherein at least one of the electrodes is a titanium-containing ...<br />]]></description>		         
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			         <title><![CDATA[ANTI-REFLECTIVE COATINGS FOR MICRO-FLUID APPLICATIONS]]></title>
			         <link>http://www.patentstorm.us/applications/20120026234/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120026234</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventor:</strong> &nbsp;BELL, BYRON V.</li></ul>Micro-fluid ejection heads have anti-reflective coatings. The coatings destructively interfere with light at wavelengths of interest during subsequent photo imaging processing, such as during nozzle plate imaging. Methods include determining wavelengths of photoresists. Layers are applied to the substrate and anodized. They form an oxidized layer of a predetermined thickness and reflectivity that essentially eliminates stray and scattered light during production of nozzle plates. Process ...<br />]]></description>		         
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			         <title><![CDATA[WATER TREATMENT METHOD]]></title>
			         <link>http://www.patentstorm.us/applications/20120024720/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120024720</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Anderson, Stuart Bruce; Palmer, Ross Leslie</li></ul>A method for sanitization of water in a swimming pool or the like comprises the steps of forming, in the pool water, an electrolyte solution containing from 1500 ppm to 9000 ppm of a soluble magnesium halide salt, treating the electrolyte solution in en electrolytic halogenation cell to form an aqueous solution of hypohalous acid and then returning the water so treated back to a swimming pool. A mixture of magnesium and potassium chlorides with small quantities of soluble alkaline earth metal ...<br />]]></description>		         
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			         <title><![CDATA[REMOVAL OF METALS FROM WATER]]></title>
			         <link>http://www.patentstorm.us/applications/20120024719/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120024719</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventor:</strong> &nbsp;Botte, Gerardine G.</li></ul>A method of purifying water is provided that includes applying a voltage to an electrolytic cell <b>10</b> that includes an anode <b>14</b>, a cathode <b>16</b> and an alkaline electrolyte composition having a pH value of about 11 or less. The alkaline electrolyte composition <b>13</b> includes at least one waste metal ion to be reduced, and a sacrificial reductant, such as urea, ammonia or a combination thereof, to be oxidized. According to the disclosed method, the voltage is applied across ...<br />]]></description>		         
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			         <title><![CDATA[METHOD FOR TREATING A SUBSTANCE WITH WAVE ENERGY FROM PLASMA AND AN ELECTRICAL ARC]]></title>
			         <link>http://www.patentstorm.us/applications/20120024718/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120024718</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventor:</strong> &nbsp;Foret, Todd</li></ul>An apparatus for synergistically combining a plasma with a comminution means such as a fluid kinetic energy mill (jet mill), preferably in a single reactor and/or in a single process step is provided by the present invention. Within the apparatus of the invention potential energy is converted into kinetic energy and subsequently into angular momentum by means of wave energy, for comminuting, reacting and separation of feed materials. Methods of use of the apparatus in the practice of various ...<br />]]></description>		         
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			         <title><![CDATA[METHOD FOR PRODUCING A METAL COMPONENT]]></title>
			         <link>http://www.patentstorm.us/applications/20120024717/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120024717</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;ROEBLITZ, Martin; SCHMIDT, Georg</li></ul>Method for machining a metal component which has a three-dimensional shape produced by removing and/or shaping material, wherein one or more superior component sections are electrochemically finish-machined by means of a nozzle-like cathode, via which an electrolyte is delivered into the working region, and wherein the cathode or the metal component is moved freely in space by means of a manipulator ...<br />]]></description>		         
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			         <title><![CDATA[DEVICE AND METHOD FOR REDUCING CARBON DIOXIDE]]></title>
			         <link>http://www.patentstorm.us/applications/20120024716/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120024716</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;ZENITANI, Yuji; YOTSUHASHI, Satoshi; TANIGUCHI, Reiko; DEGUCHI, Masahiro</li></ul>A device for reducing carbon dioxide includes a vessel for holding an electrolyte solution including carbon dioxide, a working electrode and a counter electrode. The working electrode contains metal hexaboride ...<br />]]></description>		         
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