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公开(公告)号:US20160165970A1
公开(公告)日:2016-06-16
申请号:US14906915
申请日:2014-07-25
Applicant: DREXEL UNIVERSITY
Inventor: Kristy JOST , Yury GOGOTSI , Genevieve DION
IPC: A41D13/005 , A41D31/00
Abstract: A garment includes a supercapacitor and/or heated fabrics including a first conductive yarn knitted to as to form a current collector and a second conductive yarn knitted to as to form an electrode that is in electrical contact with the current collector. The conductive yarns are knitted into a predetermined supercapacitor design having respective electrodes that are not in electrical contact with each other. An electrolyte saturates at least the electrode material either before or after knitting, and an ionically permeable electronic separator allows the electrodes to be in close proximity to each other without being in electrical contact with each other. A heating element may also be formed by knitting at least one of the first and second conductive yarns into a linear resistor or by knitting an insulated conductive yarn into a sheet of fabric. Such a heating element is connected to the supercapacitor via a switch.
Abstract translation: 衣服包括超级电容器和/或加热织物,其包括编织为形成集电器的第一导电纱线和编织成形成与集电器电接触的电极的第二导电纱线。 导电丝被编织成具有彼此不电接触的各个电极的预定超级电容器设计。 电解质在编织前或之后至少饱和至少电极材料,并且离子渗透性电子分离器允许电极彼此靠近而不彼此电接触。 加热元件也可以通过将第一和第二导电丝中的至少一个编织成线性电阻器或者将绝缘的导电丝编织成织物片而形成。 这种加热元件经由开关连接到超级电容器。
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公开(公告)号:US20220010466A1
公开(公告)日:2022-01-13
申请号:US17291718
申请日:2019-11-08
Applicant: Drexel University
Inventor: Simge UZUN , Yury GOGOTSI , Genevieve DION , Amy L. STOLTZFUS
Abstract: Provided are textiles comprising one or both of MXene-coated fibers and MXene-coated yarns. The textiles are conductive, electroactive, and the fibers and yarns exhibit favorable mechanical and electrical properties, and can be incorporated into a variety of devices and uses.
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公开(公告)号:US20210396607A1
公开(公告)日:2021-12-23
申请号:US17292031
申请日:2019-11-08
Applicant: Drexel University , Deakin University
Inventor: Simge UZUN , Yury GOGOTSI , Genevieve DION , Amy L. STOLTZFUS , Shayan SEYEDIN
Abstract: Provided are sensors comprising one or both of MXene-coated fibers and MXene-coated yarns. The MXene-coated yarns can be utilized for various types of smart textile applications where conductivity is required. These include but are not limited to sensors (e.g. pressure, strain, moisture, and temperature), supercapacitors, triboelectric generators, antennas, and electromagnetic interference (EMI) shielding textiles.
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