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    • 3. 发明申请
    • IONIC POLYMER DEVICES AND METHODS OF FABRICATING THE SAME
    • 离子聚合物装置及其制造方法
    • WO2007084796A2
    • 2007-07-26
    • PCT/US2007/001853
    • 2007-01-23
    • HITACHI CHEMICAL RESEARCH CENTER, INC.HITACHI CHEMICAL CO., LTD.WU, YongxianLI, Yangyang
    • WU, YongxianLI, Yangyang
    • H01M4/00
    • H01M4/8642C08J5/20F03G7/005H01B1/122
    • An embodiment provides an ionic polymer device comprising two extended electrode layers comprising a plurality of conductive particles, wherein the plurality of conductive particles form a concentration gradient in each of the two extended electrode layers; an ionic polymer dielectric layer between two extended electrode layers; and at least one conductive layer on outer surfaces of two extended electrode layers. Another embodiment provides an ionic polymer device comprising a polymer composite with a plurality of surface features on two opposite surfaces; and at least one conductive layer on each of said two opposite surfaces. One embodiment provides a method of making an ionic polymer device, comprising forming a partially cured polymer-metallic salt layer, reducing the metallic salt to form a plurality of metal particles, thereby forming a first extended electrode layer and a second extended electrode layer at and near opposite surfaces of the ionic polymer device. Another embodiment provides a method of making an ionic polymer device, comprising providing at least one mixture comprising a plurality of conductive particles in an ionic polymer solution; forming at least one extended electrode layer comprising a plurality of conductive particles by curing the at least one mixture; providing an ionic polymer dielectric layer on one of the at least one extended electrode layer; and depositing at least one conductive layer on the outer surface of the at least one extended electrode layer. Yet another embodiment provides a method of making an ionic polymer device, comprising providing at least one imprinting plate; providing an ionic polymer solution; and applying the ionic polymer solution on the at least one imprinting plate, thereby forming at least one imprinted polymer layer with surface features.
    • 一个实施方案提供了一种离子聚合物装置,其包括两个包括多个导电颗粒的延伸电极层,其中多个导电颗粒在两个延伸电极层中的每一个中形成浓度梯度; 两个延伸电极层之间的离子聚合物电介质层; 以及在两个延伸电极层的外表面上的至少一个导电层。 另一个实施方案提供了一种离子聚合物装置,其包括在两个相对表面上具有多个表面特征的聚合物复合材料; 以及在所述两个相对表面中的每一个上的至少一个导电层。 一个实施方案提供了一种制备离子聚合物装置的方法,包括形成部分固化的聚合物金属盐层,还原金属盐以形成多个金属颗粒,由此在其上形成第一延伸电极层和第二延伸电极层, 靠近离子聚合物装置的相对表面。 另一个实施方案提供了一种制备离子聚合物装置的方法,包括在离子聚合物溶液中提供包含多个导电颗粒的至少一种混合物; 通过固化所述至少一种混合物形成包含多个导电颗粒的至少一个延伸电极层; 在所述至少一个延伸电极层之一上提供离子聚合物电介质层; 以及在所述至少一个延伸电极层的外表面上沉积至少一个导电层。 另一个实施方案提供了一种制备离子聚合物装置的方法,包括提供至少一个压印板; 提供离子聚合物溶液; 以及将所述离子聚合物溶液施加在所述至少一个压印板上,从而形成具有表面特征的至少一个压印聚合物层。