"That the automobile has practically reached the limit of its development is suggested by the fact that during the past year no improvements of a radical nature have been introduced."
Scientific American ; Jan. 2 edition, 1909
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| Number | Title | Issue Date |
| 7705222 | Controlled alignment of nano-barcodes encoding specific information for scanning probe microscopy (SPM) The methods, apparatus and compositions disclosed herein concern the detection, identification and/or sequencing of biomolecules, such as nucleic acids or proteins. In certain embodiments of the invention, coded probes comprising a probe molecule attached to one or ... | 04/27/2010 |
| 7531726 | Controlled alignment of nanobarcodes encoding specific information for scanning probe microscopy (SPM) reading The methods, apparatus and compositions disclosed herein concern the detection, identification and/or sequencing of biomolecules, such as nucleic acids or proteins. In certain embodiments of the invention, coded probes comprising a probe molecule attached to one or ... | 05/12/2009 |
| 7429371 | Reversible oxidation of carbon nanotubes Carbon nanotubes have been reversibly and readily oxidized and reduced with common chemicals in solution, thereby allowing the nanotubes to be used as catalysts for chemical reactions and as stable charge storage devices. ... | 09/30/2008 |
| 7416911 | Electrochemical method for attaching molecular and biomolecular structures to semiconductor microstructures and nanostructures A method by which silicon nanostructures may be selectively coated with molecules or biomolecules using an electrochemical process. This chemical process may be employed as a method for coating many different nanostructures within a circuit, each with a different mo... | 08/26/2008 |
| 7361821 | Controlled alignment of nanobarcodes encoding specific information for scanning probe microscopy (SPM) reading The methods, apparatus and compositions disclosed herein concern the detection, identification and/or sequencing of biomolecules, such as nucleic acids or proteins. In certain embodiments of the invention, coded probes comprising a probe molecule attached to one or ... | 04/22/2008 |
| 7273718 | Isolated genomic polynucleotide fragments from chromosome 10q25.3 that encode human soluble aminopeptidase P The invention is directed to an isolated genomic polynucleotide fragment that encodes human soluble (cytosolic) aminopeptidase P, vectors and hosts containing the fragment and fragments hybridizing to noncoding regions as well as antisense oligonucleotides to these ... | 09/25/2007 |
| 7238472 | Non-alloying core shell nanoparticles The present invention relates composite core/shell nanoparticles and a two-step method for their preparation. The present invention further relates to biomolecule-core/shell nanoparticle conjugates and methods for their preparation. The invention also relates to met... | 07/03/2007 |
| 7232807 | Compositions and methods for binding agglomeration proteins Amplibody compositions and methods used to interact with agglomeration proteins are disclosed herein. Compositions herein comprise one or more DNA or RNA molecules having affinity for at least one agglomeration protein. The nucleic acid component is a naturally or n... | 06/19/2007 |
| 7132275 | Multifunctional magnetic nanowires The invention provides multisegmented, multifunctional magnetic nanowires for the probing and manipulation of molecules at the cellular and subcellular level. The different segments of the nanowire may have differing properties, including a variety of magnetic, non-... | 11/07/2006 |
| 7056675 | Method of forming an electrically conductive connection utilizing a polynucleotide/conductive polymer complex A conductive polymer is formed enzymatically in the presence of a polynucleotide template. The method includes combining at least one redox monomer with a polynucleotide template and a redox enzyme, such as horseradish peroxidase, to form a reaction mixture. The mon... | 06/06/2006 |
| 6664103 | Chemically assembled nano-scale circuit elements The present invention provides nano-scale devices, including electronic circuits, using DNA molecules as a support structure. DNA binding proteins are used to mask regions of the DNA as a material, such as a metal is coated onto the DNA. Included in the i... | 12/16/2003 |