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		    <title>PatentStorm ->  Applications -> Organic compounds -- part of the class 532-570 series</title>
		    <link>http://www.patentstorm.us/rss/class/applications/rss-570.xml</link>
		    <description>Recent patent applications filings in USPTO Class 570 Organic compounds -- part of the class 532-570 series.</description>
		    <pubDate>Thu, 16 Feb 2012 15:00:50</pubDate>
		    <managingEditor>patents@patentstorm.us</managingEditor>
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			         <title><![CDATA[PROCESS FOR PREPARATION OF 2,3,3,3-TETRAFLUOROPROPENE]]></title>
			         <link>http://www.patentstorm.us/applications/20120041239/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041239</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Yamashita, Tsuneo; Suzuki, Atsushi; Nose, Masatoshi</li></ul>The present invention provides an effective, selective, and industrially applicable process for producing 2,3,3,3-tetrafluoropropene. Specifically, the present invention provides a process for producing 2,3,3,3-tetrafluoropropene including reacting 2-chloro-3,3,3-trifluoropropene with hydrogen fluoride in the presence of oxygen and a catalyst comprising chromium oxide represented by the composition formula: CrOm (1.5&lt;m&lt;3), or fluorinated chromium oxide obtained by fluorinating the ...<br />]]></description>		         
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			         <title><![CDATA[METHODS OF MAKING CHLORINATED HYDROCARBONS]]></title>
			         <link>http://www.patentstorm.us/applications/20120035402/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035402</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Branam, Lloyd B.; Klausmeyer, Rodney L.; Wilson, Richard L.; Dawkins, John Lee; Rohrback, Daniel D.; Strathe, James S.</li></ul>Methods for the manufacture of 1,1,1,2,3-pentachloropropane from 1,1,1,3-tetrachloropropane and chlorine are disclosed. Improved methods are provided for the manufacture of 1,1,2,3-tetrachloropropene from 1,1,1,2,3-pentachloropropane. Methods are also disclosed for the manufacture of 1,1,2,3-tetrachloropropene from 1,1,1,3-tetrachloropropane and chlorine and for the manufacture of 1,1,2,3-tetrachloropropene from carbon tetrachloride, ethylene, and ...<br />]]></description>		         
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			         <title><![CDATA[Pelletized Low Molecular Weight Brominated Aromatic Polymer Compositions]]></title>
			         <link>http://www.patentstorm.us/applications/20120035401/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035401</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Liu, Bo; Kumar, Govindarajulu; Luther, Douglas W.; Layman, JR., William J.; Mack, Arthur G.</li></ul>Novel polymer compositions of specified formula are converted into pellets of this invention by process technology provided by this invention. By forming a binder free melt of a polymer of such polymer compositions, and converting the melt into pellets as described here-in, pellets can be formed produce during production, handling, and use, no more than acceptably small amounts of “fines” or air-entrainable ...<br />]]></description>		         
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			         <title><![CDATA[Catalytic Wittig and Mitsunobu Reactions]]></title>
			         <link>http://www.patentstorm.us/applications/20120029211/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029211</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventor:</strong> &nbsp;O'Brien, Christopher J.</li></ul>A catalytic Wittig method utilizing a phosphine including the steps of providing a phosphine oxide precatalyst and reducing the phosphine oxide precatalyst to produce the phosphine; forming a phosphonium ylide precursor from the phosphine and a reactant; generating a phosphonium ylide from the phosphonium ylide precursor; reacting the phosphonium ylide precursor with the aldehyde, ketone, or ester to form the olefin and the phosphine oxide which then reenters the cycle. The invention is also ...<br />]]></description>		         
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			         <title><![CDATA[NOVEL ORGANIC COMPOUND, LIGHT-EMITTING DEVICE, AND IMAGE DISPLAY APPARATUS]]></title>
			         <link>http://www.patentstorm.us/applications/20120025183/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120025183</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Kamatani, Jun; Yamada, Naoki; Horiuchi, Takayuki; Saitoh, Akihito</li></ul>Provided is an acenaphtho[1,2-k]benzo[e]acephenanthrene derivative represented by general formula (1):</p>
<p id="p-0002" num="0000">
</p>
<p id="p-0003" num="0000">wherein R<sub>1 </sub>to R<sub>16 </sub>are each independently selected from a hydrogen atom, a halogen atom, a substituted or unsubstituted alkyl group, a substituted or unsubstituted alkoxy group, a substituted or unsubstituted amino group, a substituted or unsubstituted aryl group, and a substituted or unsubstituted heterocyclic ...<br />]]></description>		         
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			         <title><![CDATA[NOVEL COMPOUNDS, DERIVATIVES THEREOF AND THEIR USE IN HETEROJUNCTION DEVICES]]></title>
			         <link>http://www.patentstorm.us/applications/20120024382/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120024382</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Baeuerle, Peter; Holmes, Andrew; Jones, David; Wong, Wing Ho Wallace; Ma, Chang Qi</li></ul>The invention relates to novel polyaromatic and polyheteroaromatic compounds and derivatives thereof. The compounds display high solubility in organic solvents. A further aspect of the invention relates to the use of the novel compounds in the fabrication of organic film based heterojunction devices. In one form the devices display high conversion efficiencies in solar cell ...<br />]]></description>		         
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			         <title><![CDATA[PROCESS FOR PREPARING 2-CHLORO-3,3,3-TRIFLUOROPROPENE]]></title>
			         <link>http://www.patentstorm.us/applications/20120022303/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120022303</li><li><strong>Publication Date:</strong> &nbsp;2012-01-26</li><li><strong>Inventors:</strong> &nbsp;Yamashita, Tsuneo; Suzuki, Atsushi; Nose, Masatoshi; Katsukawa, Kenichi</li></ul>The present invention provides a process for preparing 2-chloro-3,3,3-trifluoropropene including subjecting, in the absence of a catalyst, at least one chlorine-containing compound selected from the group consisting of chloropropane represented by formula (1): CClX<sub>2</sub>CHClCH<sub>2</sub>Cl, wherein each X is the same or different and each represents Cl or F, chloropropene represented by formula (2): CClY<sub>2</sub>CCl═CH<sub>2</sub>, wherein each Y is the same or different and each ...<br />]]></description>		         
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			         <title><![CDATA[INTEGRATED PROCESS FOR THE MANUFACTURE OF FLUORINATED OLEFINS]]></title>
			         <link>http://www.patentstorm.us/applications/20120022302/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120022302</li><li><strong>Publication Date:</strong> &nbsp;2012-01-26</li><li><strong>Inventors:</strong> &nbsp;KOPKALLI, HALUK; TUNG, HSUEH SUNG; BEKTESEVIC, SELMA</li></ul>The instant invention relates, at least in part, to a method increasing the cost efficiency for dehydrohalogenation production of a fluorinated olefin by recovering and recycling spent dehydrohalogenation agent. In one aspect, the present invention relates to dehydrohalogenating a fluorinated alkane (e.g. pentafluoropropane and/or hexafluoropropane) in the presence of a dehydrohalogenating agent to produce a fluorinated olefin (e.g. tetrafluoropropenes and/or pentafluoropropenes). Removal of ...<br />]]></description>		         
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			         <title><![CDATA[Process For The Preparation of Fluoroolefin Compounds]]></title>
			         <link>http://www.patentstorm.us/applications/20120022301/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120022301</li><li><strong>Publication Date:</strong> &nbsp;2012-01-26</li><li><strong>Inventors:</strong> &nbsp;Bossoutrot, Jean-Michel; Sedat, Pierre-Marie</li></ul>The subject of the invention is a process for the preparation of fluoroolefin compounds. It relates more particularly to a process for manufacturing a (hydro)fluoroolefin compound comprising (i) bringing at least one compound comprising from three to six carbon atoms, at least two fluorine atoms and at least one hydrogen atom, provided that at least one hydrogen atom and one fluorine atom are located on adjacent carbon atoms, into contact with potassium hydroxide in a stirred reactor, ...<br />]]></description>		         
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			         <title><![CDATA[Methods for Making 3-Chloro-1,1,1,6,6,6-Hexafluoro-2,4-Hexadiene]]></title>
			         <link>http://www.patentstorm.us/applications/20120022300/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120022300</li><li><strong>Publication Date:</strong> &nbsp;2012-01-26</li><li><strong>Inventors:</strong> &nbsp;Tung, Hsueh Sung Harry; Johnson, Robert</li></ul>Disclosed are compositions and systems having utility in numerous situations, including in particular solvent cleaning systems, as well as refrigerant lubricants and/or compatibilizing agents, and to methods which utilize such compositions and systems. More particularly, the present invention in preferred aspects is directed to solvents, blowing agents, heat transfer fluids and compatibilizing agents comprising the compound <b>3</b>-chloro-<b>1,1,1,6,6,6</b>-hexafluoro-<b>2,4</b>-hexadiene. In ...<br />]]></description>		         
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			         <title><![CDATA[PHOSPHINE LIGANDS FOR CATALYTIC REACTIONS]]></title>
			         <link>http://www.patentstorm.us/applications/20120022252/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120022252</li><li><strong>Publication Date:</strong> &nbsp;2012-01-26</li><li><strong>Inventors:</strong> &nbsp;Shekhar, Shashank; Franczyk, Thaddeus S.; Barnes, David M.; Dunn, Travis B.; Haight, Anthony R.; Chan, Vincent S.</li></ul>The disclosure is directed to: (a) phosphacycle ligands; (b) methods of using such phosphacycle ligands in bond forming reactions; and (c) methods of preparing phosphacycle ...<br />]]></description>		         
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