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公开(公告)号:US11482384B2
公开(公告)日:2022-10-25
申请号:US16872959
申请日:2020-05-12
发明人: Riccardo Signorelli , John J. Cooley , Christopher John Sibbald Deane , James Epstein , Padmanaban Sasthan Kuttipillai , Fabrizio Martini , Lindsay A. Wilhelmus
摘要: An ultracapacitor that includes an energy storage cell immersed in an electrolyte and disposed within an hermetically sealed housing, the cell electrically coupled to a positive contact and a negative contact, wherein the ultracapacitor is configured to output electrical energy within a temperature range between about 80 degrees Celsius to about 210 degrees Celsius. Methods of fabrication and use are provided.
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公开(公告)号:US20220254576A1
公开(公告)日:2022-08-11
申请号:US17732993
申请日:2022-04-29
摘要: A solid state polymer electrolyte is disclosed for use in an ultracapacitor. The electrolyte includes an ionic liquid and a polymer and may include other additives, wherein an ultracapacitor that utilizes the solid state electrolyte is configured to output electrical energy at temperatures between about −40° C. and about 250° C. or more.
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公开(公告)号:US11410820B2
公开(公告)日:2022-08-09
申请号:US16427546
申请日:2019-05-31
摘要: An apparatus is disclosed that includes an active storage layer including: a network of carbon nanotubes defining void spaces; and a carbonaceous material located in the void spaces and bound by the network of carbon nanotubes. In some cases, the active layer provides energy storage, e.g., in an ultracapacitor device.
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公开(公告)号:US20200227211A1
公开(公告)日:2020-07-16
申请号:US16828436
申请日:2020-03-24
摘要: An apparatus is disclosed that includes an active storage layer including: a network of carbon nanotubes defining void spaces; and a carbonaceous material located in the void spaces and bound by the network of carbon nanotubes. In some cases, the active layer provides energy storage, e.g., in an ultracapacitor device.
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公开(公告)号:US20200082997A1
公开(公告)日:2020-03-12
申请号:US16681293
申请日:2019-11-12
摘要: An apparatus is disclosed that includes an active storage layer including: a network of carbon nanotubes defining void spaces; and a carbonaceous material located in the void spaces and bound by the network of carbon nanotubes. In some cases, the active layer provides energy storage, e.g., in an ultracapacitor device.
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公开(公告)号:US20150210548A1
公开(公告)日:2015-07-30
申请号:US14683974
申请日:2015-04-10
发明人: Nicolò Michele Brambilla , Riccardo Signorelli , Fabrizio Martini , Oscar Enrique Corripio Luna
IPC分类号: C01B31/02 , B01J8/00 , B05D1/04 , C23C16/52 , C23C16/02 , C23C16/26 , C23C14/24 , C23C14/02 , C23C14/54 , C23C14/06 , C23C14/34 , C23C14/32 , C23C14/22 , H01J37/34 , B01J8/02
CPC分类号: B01J19/22 , B01J2219/0879 , B01J2219/0892 , B01J2219/0894 , B82Y30/00 , B82Y40/00 , C01B32/16 , C01B2202/08 , Y10S977/742 , Y10S977/843
摘要: Mass production of carbon nanotubes (CNT) are facilitated by methods and apparatus disclosed herein. Advantageously, the methods and apparatus make use of a single production unit, and therefore provide for uninterrupted progress in a fabrication process. Embodiments of control systems for a variety of CNT production apparatus are included.
摘要翻译: 碳纳米管(CNT)的大规模生产通过本文公开的方法和设备来实现。 有利地,所述方法和装置利用单个生产单元,因此提供制造过程中的不间断进展。 包括用于各种CNT生产设备的控制系统的实施例。
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公开(公告)号:US20230282426A1
公开(公告)日:2023-09-07
申请号:US18139008
申请日:2023-04-25
IPC分类号: H01G11/36 , H01G11/28 , H01G11/24 , H01G11/70 , H01G11/86 , H01G11/26 , C01B32/158 , B82Y30/00 , H01G11/48
CPC分类号: H01G11/36 , H01G11/28 , H01G11/24 , H01G11/70 , H01G11/86 , H01G11/26 , C01B32/158 , B82Y30/00 , H01G11/48 , Y02E60/13 , H01G11/46
摘要: Disclosed herein is electrode comprising a current collector comprising a conductor layer having at least a first surface; and elongated metal carbide nanostructures extending from the first surface; and a carbonaceous energy storage media disposed on the first surface and in contact with the elongated metal carbide nanostructures. Disclosed herein too is an ultracapacitor comprising at least one electrode comprising a current collector comprising a conductor layer having at least a first surface; and elongated metal carbide nanostructures extending from the first surface; and a carbonaceous energy storage media disposed on the first surface and in contact with the elongated metal carbide nanostructures.
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公开(公告)号:US10886074B2
公开(公告)日:2021-01-05
申请号:US16591901
申请日:2019-10-03
IPC分类号: H01G11/36 , H01G11/28 , H01G11/24 , H01G11/70 , H01G11/86 , H01G11/26 , C01B32/158 , B82Y30/00 , H01G11/48 , H01G11/46
摘要: Disclosed herein is electrode comprising a current collector comprising a conductor layer having at least a first surface; and elongated metal carbide nanostructures extending from the first surface; and a carbonaceous energy storage media disposed on the first surface and in contact with the elongated metal carbide nanostructures. Disclosed herein too is an ultracapacitor comprising at least one electrode comprising a current collector comprising a conductor layer having at least a first surface; and elongated metal carbide nanostructures extending from the first surface; and a carbonaceous energy storage media disposed on the first surface and in contact with the elongated metal carbide nanostructures.
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公开(公告)号:US10600582B1
公开(公告)日:2020-03-24
申请号:US16681293
申请日:2019-11-12
摘要: An apparatus is disclosed that includes an active storage layer including: a network of carbon nanotubes defining void spaces; and a carbonaceous material located in the void spaces and bound by the network of carbon nanotubes. In some cases, the active layer provides energy storage, e.g., in an ultracapacitor device.
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公开(公告)号:US20200020488A1
公开(公告)日:2020-01-16
申请号:US16452291
申请日:2019-06-25
发明人: Fabrizio Martini , Riccardo Signorelli , John J. Cooley , Christopher John Sibbald Deane , James Epstein , Padmanaban Sasthan Kuttipillai , Lindsay A. Wilhelmus
IPC分类号: H01G11/30 , H01G11/34 , H01G11/36 , H01G11/52 , H02J7/00 , H01M10/052 , H01M10/0568
摘要: An ultracapacitor that includes an energy storage cell immersed in an advanced electrolyte system and disposed within a hermetically sealed housing, the cell electrically coupled to a positive contact and a negative contact, wherein the ultracapacitor is configured to output electrical energy within a temperature range between about −40 degrees Celsius to about 210 degrees Celsius. Methods of fabrication and use are provided.
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