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    • 123. 发明授权
    • Alleviation of voltage delay in lithium-liquid depolarizer/electrolyte solvent battery cells
    • 缓解锂 - 液体去极化器/电解质溶剂电池中的电压延迟
    • US07482096B2
    • 2009-01-27
    • US10455259
    • 2003-06-04
    • Lutgard De JongheYevgeniy S. NimonSteven J. Visco
    • Lutgard De JongheYevgeniy S. NimonSteven J. Visco
    • H01M4/58
    • H01M4/38H01M4/0402H01M4/368H01M4/405H01M6/14H01M10/0563H01M10/4235
    • Voltage delay in an active metal anode/liquid cathode battery cell can be significantly reduced or completely alleviated by coating the active metal anode (e.g., Li) surface with a thin layer of an inorganic compound with Li-ion conductivity using chemical treatment of Li surface. Particularly, preferred examples of such compounds include lithium phosphate, lithium metaphosphate, and/or their mixtures or solid solutions with lithium sulphate. These compounds can be formed on the Li surface by treatment with diluted solutions of the following individual acids: H3PO4, HPO3 and H2SO4, their acidic salts, or their binary or ternary mixtures in a dry organic solvent compatible with Li, for instance in 1,2-DME; by various deposition techniques. Such chemical protection of the Li or other active metal electrode significantly reduces the voltage delay due to protected anode's improved stability toward the electrolyte.
    • 通过使用Li表面的化学处理,用具有Li离子传导性的无机化合物的薄层涂覆活性金属阳极(例如Li)表面,可以显着降低或完全减轻活性金属阳极/液体阴极电池单元中的电压延迟 。 特别地,这些化合物的优选实例包括磷酸锂,偏磷酸锂和/或其与硫酸锂的混合物或固溶体。 这些化合物可以在Li表面上通过用与Li相容的干燥有机溶剂中的以下各种酸:H 3 PO 4,HPO 3和H 2 SO 4,它们的酸性盐或其二元或三元混合物的稀释溶液,例如1, 2-DME; 通过各种沉积技术。 Li或其他活性金属电极的这种化学保护显着地降低了由于被保护的阳极提高了对电解质的稳定性的电压延迟。
    • 124. 发明申请
    • ELECTROTRANSPORT DEVICES, METHODS AND DRUG ELECTRODE ASSEMBLIES
    • 电子输送装置,方法和药物电极组件
    • US20090005824A1
    • 2009-01-01
    • US12163821
    • 2008-06-27
    • Steven J. ViscoYevgeniy S. NimonBruce Katz
    • Steven J. ViscoYevgeniy S. NimonBruce Katz
    • A61N1/18
    • A61N1/0448A61N1/0436A61N1/0444
    • A drug electrode assembly usefully employed in an electrotransport device for the delivery of drugs across a tissue surface includes an electrode, a drug reservoir which stores the drug (including an ionized (e.g., anionic) or neutrally charged drug species), and a liquid impermeable solid-state assist ion conducting barrier layer interposed between the electrode and the drug reservoir. The barrier layer can be a single-ion conductor of a specific (unique) species of ion called the assist ion. During drug delivery, the assist ion moves across the barrier layer into or out of the drug reservoir, and as the assist ion crosses the barrier layer/drug reservoir interphase, the drug species moves to the tissue surface. The assist ion can be, for example, sodium ions (Na+), and the electrode can be an electrode of the assist ion (i.e., a sodium electrode).
    • 有效地用于电传输装置中用于在组织表面递送药物的药物电极组件包括电极,储存药物的药物储存器(包括电离(例如阴离子)或中性带电药物))和不透液体 固态辅助离子传导阻挡层介于电极和药物储存器之间。 阻挡层可以是称为辅助离子的特定(独特)离子种类的单离子导体。 在药物递送期间,辅助离子穿过阻隔层进入或流出药物储存器,并且当辅助离子穿过阻挡层/药物储存器相间时,药物物质移动到组织表面。 辅助离子可以是例如钠离子(Na +),电极可以是辅助离子的电极(即钠电极)。