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Electrophoretic Deposition of Spherical and Rod-Shaped Nanocrystals into Close Packed Superlattices

机译:球形和棒状纳米晶体的电泳沉积到封闭式超晶格中

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Ordered nanocrystal assemblies are an exciting new class of materials where electronic, optical or magnetic properties can be dictated by tuning the position and ligand environment of each nanocrystal structural unit. Device integration in both nanoelectronics and nanophotonics relies on the ability to locate these ensembles with nanoscale accuracy exactly where they are needed. In this paper we overview our recent work in the area of electrophoretic deposition of charged nanocrystals from toluene.(1, 2) The systems discussed are twofold 1: gold nanocrystals (8nm) which are positively charged and assembled from a toluene solution with unprecedented selectivity into lithographic channels and 2: CdS nanorods (100nm×8nm) which are negatively charged and assembled into perpendicularly oriented nanorod superlattices over centimeter squared areas suitable for nanorod solar-cells.
机译:订购的纳米晶体组件是一种激动的新类材料,其中通过调节每个纳米晶体结构单元的位置和配体环境来规定电子,光学或磁性。纳米电子和纳米光电学中的设备集成依赖于将这些合奏的能力以纳米级精度定位在所需的位置。在本文中,我们概述了我们最近在来自甲苯的带电纳米晶体的电泳沉积领域的工作。(1,2)所讨论的系统是双重的1:金纳米晶体(8nm),其与甲苯溶液带正充电并与前所未有的选择性组装进入光刻通道和2:Cds纳米棒(100nm×8nm),其被带负电并组装成垂直定向的纳米棒超晶格,其适用于纳米棒太阳能电池的厘米平方区域。

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