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Self-Assembling Colloidal-Scale Devices: Selecting and Using Short-Range Surface Forces Between Conductive Solids

机译:自组装胶体规模的设备:选择和使用导电固体​​之间的短程表面力

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摘要

A new general approach to the direct formation of bipolar devices from heterogeneous colloids is suggested. By using surf ace-force theory and direct measurements, combinations of conductive device materials between which short-range repulsive forces exist in the presence of an intervening liquid, and use these interactions to self-form electrochemical junctions are identified. The Inclusion of Lifshitz-van der Waals (LW) and acid-base (AB) interactions appears to be generally sufficient for the prediction of short-range interactions. Device concepts using repulsive and attractive short-range interactions to produce self-organizing colloidal-scale devices are proposed and demonstrated. A prototype self-organizing lithium rechargeable battery is demonstrated using lithium cobalt oxide (LiCoO_2) and graphite as the active electrode materials.
机译:提出了一种从异质胶体直接形成双极性器件的新通用方法。通过使用表面力理论和直接测量,可以确定在存在导电液体的情况下存在短程排斥力的导电器件材料的组合,并利用这些相互作用来自形成电化学结。包含Lifshitz-van der Waals(LW)和酸碱(AB)相互作用似乎通常足以预测短程相互作用。提出并证明了使用排斥和吸引人的短程相互作用来产生自组织胶体规模器件的器件概念。演示了使用钴酸锂(LiCoO_2)和石墨作为活性电极材料的自组织锂可充电电池原型。

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