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    • 7. 发明授权
    • Transparent electroactive system
    • 透明电活性系统
    • US08379288B2
    • 2013-02-19
    • US13122019
    • 2009-10-07
    • Sandrine DuluardJean-Paul CanoClaudine Biver
    • Sandrine DuluardJean-Paul CanoClaudine Biver
    • G02F1/03
    • G02F1/1533G02F1/1525G02F2001/1512G02F2001/1557
    • The invention relates to a transparent electroactive system that includes two electrodes (2, 3) juxtaposed on the same side of a closed space (12) containing electroactive substances. The two electrodes are separated by a distance of less than 250 μm, and a barrier (1) extending towards the inside of the closed space is placed between the electrodes. The separation between the electrodes is thus not visible, and a mutual neutralization between the electroactive substances is prevented. Advantageously, the electroactive substances are contained in cells (5) separated from each other within the closed space. The barrier (1) can thus be distinct from separation walls (4) between the cells, or can be assimilated with some intercellular walls.
    • 本发明涉及一种透明电活性体系,其包括并置在包含电活性物质的封闭空间(12)的同一侧上的两个电极(2,3)。 两个电极间隔小于250μm的距离,并且朝向封闭空间的内部延伸的阻挡层(1)放置在电极之间。 因此电极之间的分离是不可见的,并且防止了电活性物质之间的相互中和。 有利地,电活性物质包含在封闭空间内彼此分离的电池(5)中。 因此,屏障(1)可以与细胞之间的分隔壁(4)不同,或者可以与一些细胞间壁一起被吸收。
    • 8. 发明申请
    • TRANSPARENT ELECTROACTIVE SYSTEM
    • 透明电动系统
    • US20110211245A1
    • 2011-09-01
    • US13122019
    • 2009-10-07
    • Sandrine DuluardJean-Paul CanoClaudine Biver
    • Sandrine DuluardJean-Paul CanoClaudine Biver
    • G02F1/07
    • G02F1/1533G02F1/1525G02F2001/1512G02F2001/1557
    • The invention relates to a transparent electroactive system that includes two electrodes (2, 3) juxtaposed on the same side of a closed space (12) containing electroactive substances. The two electrodes are separated by a distance of less than 250 μm, and a barrier (1) extending towards the inside of the closed space is placed between the electrodes. The separation between the electrodes is thus not visible, and a mutual neutralization between the electroactive substances is prevented. Advantageously, the electroactive substances are contained in cells (5) separated from each other within the closed space. The barrier (1) can thus be distinct from separation walls (4) between the cells, or can be assimilated with some intercellular walls.
    • 本发明涉及一种透明电活性体系,其包括并列在包含电活性物质的封闭空间(12)的同一侧上的两个电极(2,3)。 两个电极间隔小于250μm的距离,并且朝向封闭空间的内部延伸的阻挡层(1)放置在电极之间。 因此电极之间的分离是不可见的,并且防止了电活性物质之间的相互中和。 有利地,电活性物质包含在封闭空间内彼此分离的电池(5)中。 因此,屏障(1)可以与细胞之间的分隔壁(4)不同,或者可以与一些细胞间壁一起被吸收。
    • 9. 发明申请
    • PROCESS FOR MANUFACTURING AN ELECTROCHROMIC ARTICLE
    • 制造电子制品的方法
    • US20130142945A1
    • 2013-06-06
    • US13817394
    • 2011-08-16
    • Claudine BiverSandrine Duluard
    • Claudine BiverSandrine Duluard
    • G02F1/15
    • G02F1/15C09K9/00C23C18/16G02F1/1533G02F2202/36
    • The present invention relates to a process for manufacturing an electrochromic article, comprising the following successive steps: (a) deposition of a layer of an electrochromic compound on the surface of a transparent or translucent electroconductive substrate; (b) deposition of a redox agent, which is a reducing agent or an oxidizing agent for the electrochromic compound, on the layer of electrochromic compound at a multitude of discrete points or areas thereon; (c) bringing the layer of electrochromic compound, deposited in step (a), and the redox agent, deposited in step (b), into contact with a liquid electrolyte for a time long enough to allow the electrochromic compound to be reduced or oxidized by the redox agent; and (d) elimination of the electrolyte by rinsing and/or drying, the layer of electrochromic compound being a porous layer of open porosity and/or an electrically conductive layer.
    • 本发明涉及电致变色制品的制造方法,包括以下连续步骤:(a)在透明或半透明导电基材的表面上沉积电致变色化合物层; (b)在其上的多个离散点或区域上在电致变色化合物层上沉积作为电致变色化合物的还原剂或氧化剂的氧化还原剂; (c)使步骤(a)中沉积的电致变色化合物层和步骤(b)中沉积的氧化还原剂与电解液接触足够长的时间以使电致变色化合物被还原或氧化 由氧化还原剂; 和(d)通过冲洗和/或干燥除去电解质,电致变色化合物层是开放孔隙度的多孔层和/或导电层。
    • 10. 发明申请
    • NON-ELECTROLYTIC DEPOSITION METHOD
    • 非电解沉积法
    • US20110070361A1
    • 2011-03-24
    • US12995290
    • 2009-06-23
    • Sandrine DuluardClaudine Biver
    • Sandrine DuluardClaudine Biver
    • B05D5/06B05D5/12B05D3/10
    • C23C18/54
    • The invention relates to a method for the non-electrolytic deposition of a compound, preferably an electrochromic compound, comprising the following successive steps: (a) an electroconductive layer is deposited on a non-conductive solid substrate; (b) a reducing agent or an oxidizing agent (=redox agent) is deposited on an area of said electroconductive layer, said area covering only a portion of the surface of said electroconductive layer; and (c) a solution of a precursor of the compound to be deposited is brought into contact both with the redox agent and with at least a portion of the area of said electroconductive layer not covered by the redox agent, said precursor being chosen from those having an oxidation-reduction potential higher or lower than the redox agent and forming, after an oxidation-reduction reaction, a compound insoluble in the solution of the precursor of the compound to be deposited.
    • 本发明涉及一种用于非电解沉积化合物,优选电致变色化合物的方法,包括以下连续步骤:(a)导电层沉积在非导电固体基质上; (b)还原剂或氧化剂(=氧化还原剂)沉积在所述导电层的区域上,所述区域仅覆盖所述导电层表面的一部分; 和(c)待沉积的化合物的前体的溶液与氧化还原剂接触,并且所述导电层的至少一部分区域未被氧化还原剂覆盖,所述前体选自那些 具有高于或低于氧化还原剂的氧化还原电位,并且在氧化还原反应之后形成不溶于待沉积化合物的前体溶液中的化合物。