Patents by Inventor Alper Nese
Alper Nese 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: 12068474Abstract: A battery electrode composition is provided that comprises composite particles. Each of the composite particles in the composition (which may represent all or a portion of a larger composition) may comprise a porous electrode particle and a filler material. The porous electrode particle may comprise active material provided to store and release ions during battery operation. The filler material may occupy at least a portion of the pores of the electrode particle. The filler material may be liquid and not substantially conductive with respect to electron transport.Type: GrantFiled: October 15, 2021Date of Patent: August 20, 2024Assignee: SILA NANOTECHNOLOGIES, INC.Inventors: Gleb Yushin, Bogdan Zdyrko, Eugene Berdichevsky, Alexander Jacobs, Alper Nese, Adam Kajdos, Justin Yen, Justin Doane
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Patent number: 11855280Abstract: Battery electrode compositions and methods of fabrication are provided that utilize composite particles. Each of the composite particles may comprise, for example, a high-capacity active material and a porous, electrically-conductive scaffolding matrix material. The active material may store and release ions during battery operation, and may exhibit (i) a specific capacity of at least 220 mAh/g as a cathode active material or (ii) a specific capacity of at least 400 mAh/g as an anode active material. The active material may be disposed in the pores of the scaffolding matrix material. According to various designs, each composite particle may exhibit at least one material property that changes from the center to the perimeter of the scaffolding matrix material.Type: GrantFiled: January 13, 2023Date of Patent: December 26, 2023Assignee: SILA NANOTECHNOLOGIES, INC.Inventors: Gleb Yushin, Eugene Michael Berdichevsky, Alexander Thomas Jacobs, Alper Nese, Damian Harris, Bogdan Zdyrko
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Patent number: 11575129Abstract: Battery electrode compositions and methods of fabrication are provided that utilize composite particles. Each of the composite particles may comprise, for example, a high-capacity active material and a porous, electrically-conductive scaffolding matrix material. The active material may store and release ions during battery operation, and may exhibit (i) a specific capacity of at least 220 mAh/g as a cathode active material or (ii) a specific capacity of at least 400 mAh/g as an anode active material. The active material may be disposed in the pores of the scaffolding matrix material. According to various designs, each composite particle may exhibit at least one material property that changes from the center to the perimeter of the scaffolding matrix material.Type: GrantFiled: November 15, 2021Date of Patent: February 7, 2023Assignee: SILA NANOTECHNOLOGIES, INC.Inventors: Gleb Yushin, Eugene Michael Berdichevsky, Alexander Thomas Jacobs, Alper Nese, Damian Harris, Bogdan Zdyrko
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Publication number: 20220077462Abstract: Battery electrode compositions and methods of fabrication are provided that utilize composite particles. Each of the composite particles may comprise, for example, a high-capacity active material and a porous, electrically-conductive scaffolding matrix material. The active material may store and release ions during battery operation, and may exhibit (i) a specific capacity of at least 220 mAh/g as a cathode active material or (ii) a specific capacity of at least 400 mAh/g as an anode active material. The active material may be disposed in the pores of the scaffolding matrix material. According to various designs, each composite particle may exhibit at least one material property that changes from the center to the perimeter of the scaffolding matrix material.Type: ApplicationFiled: November 15, 2021Publication date: March 10, 2022Inventors: Gleb YUSHIN, Gene BERDICHEVSKY, Alexander Thomas JACOBS, Alper NESE, Damian HARRIS, Bogdan ZDYRKO
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Publication number: 20220037645Abstract: A battery electrode composition is provided that comprises composite particles. Each of the composite particles in the composition (which may represent all or a portion of a larger composition) may comprise a porous electrode particle and a filler material. The porous electrode particle may comprise active material provided to store and release ions during battery operation. The filler material may occupy at least a portion of the pores of the electrode particle. The filler material may be liquid and not substantially conductive with respect to electron transport.Type: ApplicationFiled: October 15, 2021Publication date: February 3, 2022Inventors: Gleb YUSHIN, Bogdan ZDYRKO, Eugene BERDICHEVSKY, Alexander JACOBS, Alper NESE, Adam KAJDOS, Justin YEN, Justin DOANE
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Patent number: 11233235Abstract: Battery electrode compositions and methods of fabrication are provided that utilize composite particles. Each of the composite particles may comprise, for example, a high-capacity active material and a porous, electrically-conductive scaffolding matrix material. The active material may store and release ions during battery operation, and may exhibit (i) a specific capacity of at least 220 mAh/g as a cathode active material or (ii) a specific capacity of at least 400 mAh/g as an anode active material. The active material may be disposed in the pores of the scaffolding matrix material. According to various designs, each composite particle may exhibit at least one material property that changes from the center to the perimeter of the scaffolding matrix material.Type: GrantFiled: June 28, 2019Date of Patent: January 25, 2022Assignee: SILA NANOTECHNOLOGIES, INC.Inventors: Gleb Yushin, Eugene Berdichevsky, Alexander Jacobs, Alper Nese, Damian Harris, Bogdan Zdyrko
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Patent number: 11158848Abstract: A battery electrode composition is provided that comprises composite particles. Each of the composite particles in the composition (which may represent all or a portion of a larger composition) may comprise a porous electrode particle and a filler material. The porous electrode particle may comprise active material provided to store and release ions during battery operation. The filler material may occupy at least a portion of the pores of the electrode particle. The filler material may comprise a solid and is not substantially conductive with respect to electron transport.Type: GrantFiled: November 9, 2019Date of Patent: October 26, 2021Assignee: SILA NANOTECHNOLOGIES, INC.Inventors: Gleb Yushin, Bogdan Zdyrko, Eugene Berdichevsky, Alexander Jacobs, Alper Nese, Adam Kajdos, Justin Yen, Justin Doane
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Publication number: 20200075938Abstract: A battery electrode composition is provided that comprises composite particles. Each of the composite particles in the composition (which may represent all or a portion of a larger composition) may comprise a porous electrode particle and a filler material. The porous electrode particle may comprise active material provided to store and release ions during battery operation. The filler material may occupy at least a portion of the pores of the electrode particle. The filler material may be liquid and not substantially conductive with respect to electron transport.Type: ApplicationFiled: November 9, 2019Publication date: March 5, 2020Inventors: Gleb YUSHIN, Bogdan Zdyrko, Eugene BERDICHEVSKY, Alexander JACOBS, Alper NESE, Adam KAJDOS, Justin YEN, Justin DOANE
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Patent number: 10476071Abstract: A battery electrode composition is provided that comprises composite particles. Each of the composite particles in the composition (which may represent all or a portion of a larger composition) may comprise a porous electrode particle and a filler material. The porous electrode particle may comprise active material provided to store and release ions during battery operation. The filler material may occupy at least a portion of the pores of the electrode particle. The filler material may be liquid and not substantially conductive with respect to electron transport.Type: GrantFiled: October 5, 2016Date of Patent: November 12, 2019Assignee: Sila Nanotechnologies, Inc.Inventors: Gleb Yushin, Bogdan Zdyrko, Eugene Berdichevsky, Alexander Jacobs, Alper Nese, Adam Kajdos, Justin Yen, Justin Doane
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Publication number: 20190341607Abstract: Battery electrode compositions and methods of fabrication are provided that utilize composite particles. Each of the composite particles may comprise, for example, a high-capacity active material and a porous, electrically-conductive scaffolding matrix material. The active material may store and release ions during battery operation, and may exhibit (i) a specific capacity of at least 220 mAh/g as a cathode active material or (ii) a specific capacity of at least 400 mAh/g as an anode active material. The active material may be disposed in the pores of the scaffolding matrix material. According to various designs, each composite particle may exhibit at least one material property that changes from the center to the perimeter of the scaffolding matrix material.Type: ApplicationFiled: June 28, 2019Publication date: November 7, 2019Inventors: Gleb YUSHIN, Eugene BERDICHEVSKY, Alexander JACOBS, Alper NESE, Damian HARRIS, Bogdan ZDYRKO
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Patent number: 10340520Abstract: Battery electrode compositions and methods of fabrication are provided that utilize composite particles. Each of the composite particles may comprise, for example, a high-capacity active material and a porous, electrically-conductive scaffolding matrix material. The active material may store and release ions during battery operation, and may exhibit (i) a specific capacity of at least 220 mAh/g as a cathode active material or (ii) a specific capacity of at least 400 mAh/g as an anode active material. The active material may be disposed in the pores of the scaffolding matrix material. According to various designs, each composite particle may exhibit at least one material property that changes from the center to the perimeter of the scaffolding matrix material.Type: GrantFiled: October 13, 2015Date of Patent: July 2, 2019Assignee: Sila Nanotechnologies, Inc.Inventors: Gleb Yushin, Eugene Michael Berdichevsky, Alexander Thomas Jacobs, Alper Nese, Damian Harris, Bogdan Zdyrko
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Publication number: 20180358613Abstract: The invention is a method for encapsulating an electrochemically active material composition for use in battery electrodes. The active material is coated with a first degradable or otherwise removable polymer material and a second polymer shell prior to removal of the first polymer material. The cavity left by the removal of that first polymer material enables volume expansion and contraction of the active material during battery cycling. Battery anodes including the encapsulated electrochemically active material composition provide greater energy capacity and longevity due to the capsule structure.Type: ApplicationFiled: June 5, 2018Publication date: December 13, 2018Inventor: Alper Nese
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Patent number: 9798232Abstract: Methods are generally provided for preparing a polymeric composition that includes a grafted block copolymer. Methods are also generally provided for preparing a polymeric composition that includes a star block copolymer prepared from a central core molecule that includes a plurality of attachment moieties. Methods are also generally provided for preparing a polymeric composition that includes a linear block copolymer. Block copolymers are also generally provided. Multi-segmented linear block copolymers are also generally provided.Type: GrantFiled: October 17, 2014Date of Patent: October 24, 2017Assignee: University of South CarolinaInventors: Chuanbing Tang, Christopher G. Hardy, Alper Nese, Jeffery Hayat
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Publication number: 20170098823Abstract: A battery electrode composition is provided that comprises composite particles. Each of the composite particles in the composition (which may represent all or a portion of a larger composition) may comprise a porous electrode particle and a filler material. The porous electrode particle may comprise active material provided to store and release ions during battery operation. The filler material may occupy at least a portion of the pores of the electrode particle. The filler material may be liquid and not substantially conductive with respect to electron transport.Type: ApplicationFiled: October 5, 2016Publication date: April 6, 2017Inventors: Gleb Yushin, Bogdan Zdyrko, Eugene Berdichevsky, Alexander Jacobs, Alper Nese, Adam Kajdos, Justin Yen, Justin Doane
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Publication number: 20160104882Abstract: Battery electrode compositions and methods of fabrication are provided that utilize composite particles. Each of the composite particles may comprise, for example, a high-capacity active material and a porous, electrically-conductive scaffolding matrix material. The active material may store and release ions during battery operation, and may exhibit (i) a specific capacity of at least 220 mAh/g as a cathode active material or (ii) a specific capacity of at least 400 mAh/g as an anode active material. The active material may be disposed in the pores of the scaffolding matrix material. According to various designs, each composite particle may exhibit at least one material property that changes from the center to the perimeter of the scaffolding matrix material.Type: ApplicationFiled: October 13, 2015Publication date: April 14, 2016Inventors: Gleb YUSHIN, Eugene Michael BERDICHEVSKY, Alexander Thomas JACOBS, Alper NESE, Damian HARRIS, Bogdan ZDYRKO
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Publication number: 20150126691Abstract: Methods are generally provided for preparing a polymeric composition that includes a grafted block copolymer. Methods are also generally provided for preparing a polymeric composition that includes a star block copolymer prepared from a central core molecule that includes a plurality of attachment moieties. Methods are also generally provided for preparing a polymeric composition that includes a linear block copolymer. Block copolymers are also generally provided. Multi-segmented linear block copolymers are also generally provided.Type: ApplicationFiled: October 17, 2014Publication date: May 7, 2015Inventors: Chuanbing Tang, Christopher G. Hardy, Alper Nese, Jeffery Hayat