Charge Transfer in Nanocrystalline Semiconductor Electrodes

M. Bouroushian
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引用次数: 2

Abstract

Nanocrystalline electrodes in liquid junction devices possess a number of unique properties arising from their convoluted structure and the dimensions of their building units. The light-induced charge separation and transport in photoelectrochemical systems using nanocrystalline/nanoporous semiconductor electrodes is discussed here in connection with the basic principles of the (Schottky) barrier theory. Recent models for charge transfer kinetics in normal and unipolar (dye-sensitized) cells are reviewed, and novel concepts and materials are considered.
纳米晶半导体电极中的电荷转移
液体结器件中的纳米晶电极由于其卷曲的结构和其构建单元的尺寸而具有许多独特的性质。本文结合肖特基势垒理论的基本原理,讨论了纳米晶/纳米孔半导体电极在光电化学体系中的光致电荷分离和输运。在正常和单极(染料敏化)细胞电荷转移动力学的最新模型进行了回顾,并考虑了新的概念和材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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