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    • 4. 发明申请
    • MOISTURE RESISTANT PHOTOVOLTAIC DEVICES WITH EXPOSED CONDUCTIVE GRID
    • 防水电导体的防潮光伏器件
    • US20150107666A1
    • 2015-04-23
    • US14581241
    • 2014-12-23
    • Dow Global Technologies LLC
    • Paul R. EloweMarty W. DeGrootMichael E. MillsMatt A. Stempki
    • H01L31/048H01L31/0224
    • H01L31/048H01L31/02167H01L31/022425H01L31/022466H01L31/0322H01L31/0749Y02E10/541
    • The present invention provides strategies for improving the adhesion among two or more of transparent conducting oxides, electrically conductive grid materials, and dielectric barrier layers. As a consequence, these strategies are particularly useful in the fabrication of heterojunction photovoltaic devices such as chalcogenide-based solar cells. When the barrier is formed and then the grid is applied to vias in the barrier, the structure has improved moisture barrier resistance as compared to where the barrier is formed over or around the grid. Adhesion is improved to such a degree that grid materials and dielectric barrier materials can cooperate to provide a hermetic seal over devices to protect against damage induced by environmental conditions, including damage due to water intrusion. This allows the collection grids to be at least partially exposed above the dielectric barrier, making it easy to make electronic connection to the devices.
    • 本发明提供了改善透明导电氧化物,导电栅格材料和电介质阻挡层中的两种或更多种之间的粘附性的策略。 因此,这些策略在异质结光伏器件如硫族化物基太阳能电池的制造中特别有用。 当形成屏障,然后将栅格施加到屏障中的通孔时,与在栅格上方或栅格周围形成屏障的情况相比,结构具有改善的防潮性。 附着力提高到网格材料和介电阻挡材料可以配合以提供装置上的气密密封以防止由环境条件引起的损坏(包括由于水侵入引起的损坏)的程度。 这允许收集栅极至少部分地暴露在电介质阻挡层之上,使得容易进行到器件的电子连接。
    • 8. 发明申请
    • NONIONIC SURFACTANT COMPOSITIONS
    • 非离子表面活性剂组合物
    • US20160016886A1
    • 2016-01-21
    • US14378848
    • 2013-02-14
    • DOW GLOBAL TECHNOLOGIES LLC
    • Paul R. EloweArkady L. KrasovskiyIrina V. GrafLin Wang
    • C07C213/08C07C217/08C07C209/28
    • C07C217/08C07C209/28C07C213/08C07C2601/14
    • The present invention provides nonionic surfactants, compositions incorporating these surfactants, and related methods of making and using such surfactants and compositions. The nonionic surfactants demonstrate excellent equilibrium and dynamic surface tension properties as well as excellent wetting properties. Further, representative embodiments of the surfactants have shown low foaming characteristics, indicating that the surfactants would be suitable in applications where resistance to foaming is desired. The surfactants can be used singly or in combination with other nonionic and/or ionic surfactants as desired. As an over view, the nonionic surfactants of the present invention have a structure in which the surfactant backbone includes one or more amine moieties. At least one, preferably two or more branched, cyclic, fused cyclic, and/or spyro hydrophobic moieties are pendant from at least one of the amine moieties. Additionally, at least one, preferably two or more hydrophilic moieties, preferably alkylene oxide (i.e., polyether) chains also are pendant from at least one of the amine moieties.
    • 本发明提供非离子表面活性剂,掺入这些表面活性剂的组合物,以及制备和使用这些表面活性剂和组合物的相关方法。 非离子表面活性剂表现出优异的平衡和动态表面张力性能以及优异的润湿性能。 此外,表面活性剂的代表性实施方案已经显示出低发泡特性,表明表面活性剂将适用于需要耐发泡性的应用。 表面活性剂可以根据需要单独使用或与其它非离子和/或离子表面活性剂组合使用。 从过去的观点来看,本发明的非离子表面活性剂具有其中表面活性剂主链包括一个或多个胺部分的结构。 至少一个,优选两个或更多个支链,环状稠合的环状和/或间苯二酚疏水部分从至少一个胺部分侧挂。 此外,至少一个,优选两个或更多个亲水部分,优选环氧烷(即聚醚)链也是至少一个胺部分的侧挂。