METHODS OF MANUFACTURING MULTI-FUNCTIONAL ELECTRODE DEVICES FOR FAST-CHARGING OF ENERGY-STORAGE DEVICES
    1.
    发明申请
    METHODS OF MANUFACTURING MULTI-FUNCTIONAL ELECTRODE DEVICES FOR FAST-CHARGING OF ENERGY-STORAGE DEVICES 有权
    制造能量储存装置快速充电的多功能电极装置的方法

    公开(公告)号:US20160133919A1

    公开(公告)日:2016-05-12

    申请号:US14980340

    申请日:2015-12-28

    Applicant: StoreDot Ltd.

    Abstract: Methods for manufacturing multi-functional electrode (MFE) devices for fast-charging of energy-storage devices are provided. The method includes assembling first MFE structure for forming a suitable electrochemical half-couple, the first MFE structure having a first fast-charging component (FCC) and a first MFE assembly and a counter-electrode structure for forming a complementary electrochemical half-couple and supplying an internal voltage controller (IVC) for applying a bias potential to the first MFE structure and/or the counter-electrode structure, the bias potential is set in accordance with the first MFE structure and said counter-electrode structure. The IVC is configured to regulate an intra-electrode potential gradient between the first FCC and the first MFE assembly to control a charge rate from the first FCC to the first MFE assembly.

    Abstract translation: 提供了制造用于快速充电储能装置的多功能电极(MFE)装置的方法。 该方法包括组装用于形成合适的电化学半耦合的第一MFE结构,第一MFE结构具有第一快速充电部件(FCC)和第一MFE组件以及用于形成互补电化学半耦合的对电极结构, 提供用于向第一MFE结构和/或对电极结构施加偏置电位的内部电压控制器(IVC),根据第一MFE结构和所述对电极结构设定偏置电位。 IVC被配置为调节第一FCC和第一MFE组件之间的电极内电位梯度以控制从第一FCC到第一MFE组件的充电速率。

    ELECTROLYTES WITH VINYL CARBONATE AND BUTYRATE SOLVENTS

    公开(公告)号:US20190148774A1

    公开(公告)日:2019-05-16

    申请号:US16243190

    申请日:2019-01-09

    Applicant: StoreDot Ltd.

    Abstract: Electrolytes are provided, as well as fast charging lithium ion batteries with the electrolytes and corresponding methods—which enhance the safety and performance of the fast charging lithium ion batteries. The electrolytes comprise four-carbon chain ester(s) such as ethyl butyrate and/or butyl acetate as a significant part of the linear solvent (e.g., at least half and up to the full volume) and possibly vinyl carbonate as the cyclic carbonate solvent, in addition to lithium salt(s) and possibly additives. The use of vinyl carbonate enhances the ion conductivity of the electrolyte, while the use of four-carbon chain ester(s) such as ethyl butyrate and/or butyl acetate enhances the safety of the battery.

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