Patents by Inventor Rusen Yang
Rusen Yang has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12185635Abstract: A piezoelectric transducer is provided herein, comprising a three-dimensional structure made of a plurality of peptides, the peptides being self-assembling and the structure being piezoelectric, wherein at least a portion, or each, of said plurality of peptides comprises peptides of 2 to 10 amino acid residues, provided that the plurality of peptides is not consisted of a plurality of Phe-Phe dipeptides. Further described herein are peptides having an amino acid sequence Hyp-Phe-Phe, Boc-Dip-Dip, (L)Trp-(D)Trp or (D)Trp-(L)Trp, as well as three-dimensional structures comprising such peptides.Type: GrantFiled: March 25, 2020Date of Patent: December 31, 2024Assignees: Ramot at Tel-Aviv University Ltd., Xidian UniversityInventors: Ehud Gazit, Santu Bera, Yu Chen, Sharon Gilead, Kai Tao, Sigal Lazar, Rusen Yang, Sudipta Mondal, Vasantha Basavalingappa
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Publication number: 20220190232Abstract: A piezoelectric transducer is provided herein, comprising a three-dimensional structure made of a plurality of peptides, the peptides being self-assembling and the structure being piezoelectric, wherein at least a portion, or each, of said plurality of peptides comprises peptides of 2 to 10 amino acid residues, provided that the plurality of peptides is not consisted of a plurality of Phe-Phe dipeptides. Further described herein are peptides having an amino acid sequence Hyp-Phe-Phe, Boc-Dip-Dip, (L)Trp-(D)Trp or (D)Trp-(L)Trp, as well as three-dimensional structures comprising such peptides.Type: ApplicationFiled: March 25, 2020Publication date: June 16, 2022Applicants: Ramot at Tel-Aviv University Ltd., Xidian UniversityInventors: Ehud GAZIT, Santu BERA, Yu CHEN, Sharon GILEAD, Kai TAO, Sigal LAZAR, Rusen YANG, Sudipta MONDAL, Vasantha BASAVALINGAPPA
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Patent number: 8623451Abstract: In a method of making a generating device, a plurality of spaced apart elongated seed members are deposited onto a surface of a flexible non-conductive substrate. An elongated conductive layer is applied to a top surface and a first side of each seed member, thereby leaving an exposed second side opposite the first side. A plurality of elongated piezoelectric nanostructures is grown laterally from the second side of each seed layer. A second conductive material is deposited onto the substrate adjacent each elongated first conductive layer so as to be coupled the distal end of each of the plurality of elongated piezoelectric nanostructures. The second conductive material is selected so as to form a Schottky barrier between the second conductive material and the distal end of each of the plurality of elongated piezoelectric nanostructures and so as to form an electrical contact with the first conductive layer.Type: GrantFiled: November 10, 2010Date of Patent: January 7, 2014Assignee: Georgia Tech Research CorporationInventors: Zhong L. Wang, Chen Xu, Yong Qin, Guang Zhu, Rusen Yang, Youfan Hu, Yan Zhang
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Patent number: 7982370Abstract: A small scale electrical generator includes an elongated substrate and a first piezoelectric fine wire. The first piezoelectric fine wire is disposed along a surface of the substrate. The first piezoelectric fine wire has a first end and a spaced-apart second end. A first conductive contact secures the first end of the fine wire to a first portion of the substrate and a second conductive contact secures the second end of the fine wire to a second portion of the substrate. A fabric made of interwoven strands that includes fibers from which piezoelectric nanowires extend radially therefrom and conductive nanostructures extend therefrom is configured to generate electricity.Type: GrantFiled: September 12, 2008Date of Patent: July 19, 2011Assignee: Georgia Tech Research CorporationInventors: Zhong L. Wang, Xudong Wang, Yong Qin, Rusen Yang
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Publication number: 20110107569Abstract: In a method of making a generating device, a plurality of spaced apart elongated seed members are deposited onto a surface of a flexible non-conductive substrate. An elongated conductive layer is applied to a top surface and a first side of each seed member, thereby leaving an exposed second side opposite the first side. A plurality of elongated piezoelectric nanostructures is grown laterally from the second side of each seed layer. A second conductive material is deposited onto the substrate adjacent each elongated first conductive layer so as to be coupled the distal end of each of the plurality of elongated piezoelectric nanostructures. The second conductive material is selected so as to form a Schottky barrier between the second conductive material and the distal end of each of the plurality of elongated piezoelectric nanostructures and so as to form an electrical contact with the first conductive layer.Type: ApplicationFiled: November 10, 2010Publication date: May 12, 2011Applicant: Georgia Tech Research CorporationInventors: Zhong L. Wang, Chen Xu, Yong Qin, Guang Zhu, Rusen Yang, Youfan Hu, Yan Zhang
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Patent number: 7898156Abstract: In a method of generating electricity, a plurality of living cells are grown on an array of piezoelectric nanowires so that the cells engage the piezoelectric nanowires. Induced static potentials are extracted from at least one of the piezoelectric nanowires when at least one of the cells deforms the at least one of the piezoelectric nanowires. A cell-driven electrical generator that includes a substrate and a plurality of spaced-apart piezoelectric nanowires disposed on the substrate. A plurality of spaced-apart conductive electrodes interact with the plurality of piezoelectric nanowires. A biological buffer layer that is configured to promote growth of cells is disposed on the substrate so that cells placed on the substrate will grow and engage the piezoelectric nanowires.Type: GrantFiled: March 4, 2009Date of Patent: March 1, 2011Assignee: Georgia Tech Research CorporationInventors: Zhong L. Wang, Rusen Yang
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Publication number: 20090226768Abstract: In a method of generating electricity, a plurality of living cells are grown on an array of piezoelectric nanowires so that the cells engage the piezoelectric nanowires. Induced static potentials are extracted from at least one of the piezoelectric nanowires when at least one of the cells deforms the at least one of the piezoelectric nanowires. A cell-driven electrical generator that includes a substrate and a plurality of spaced-apart piezoelectric nanowires disposed on the substrate. A plurality of spaced-apart conductive electrodes interact with the plurality of piezoelectric nanowires. A biological buffer layer that is configured to promote growth of cells is disposed on the substrate so that cells placed on the substrate will grow and engage the piezoelectric nanowires.Type: ApplicationFiled: March 4, 2009Publication date: September 10, 2009Applicant: Georgia Tech Research CorporationInventors: Zhong L. Wang, Rusen Yang
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Publication number: 20090066195Abstract: A small scale electrical generator includes an elongated substrate and a first piezoelectric fine wire. The first piezoelectric fine wire is disposed along a surface of the substrate. The first piezoelectric fine wire has a first end and a spaced-apart second end. A first conductive contact secures the first end of the fine wire to a first portion of the substrate and a second conductive contact secures the second end of the fine wire to a second portion of the substrate. A fabric made of interwoven strands that includes fibers from which piezoelectric nanowires extend radially therefrom and conductive nanostructures extend therefrom is configured to generate electricity.Type: ApplicationFiled: September 12, 2008Publication date: March 12, 2009Applicant: Georgia Tech Research CorporationInventors: Zhong L. Wang, Xudong Wang, Yong Qin, Rusen Yang