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Polymer/Metal Oxide Nanocrystals Hybrid Solar Cells

机译:聚合物/金属氧化物纳米晶体混合太阳能电池

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摘要

In this paper, we present two different types of polymer/metal oxide nanocrystals hybrid photovoltaics. One is the poly(3-hexylthiophene) (P3HT)/TiO$_2$ nanorods hybrid bulk heterojunction (BHJ) solar cell and the other is a nanostructured ZnO/P3HT hybrid solar cell. In a BHJ hybrid solar cell, the dispersed semiconducting nanocrystals lead to an increased interface area between polymer and nanocrystals, which can assist charge separation for photogenerated carriers, but at the expense of poorly formed conducting pathways for electron transport. In contrast, a nanostructured hybrid solar cell usually consists of rigidly connected nanocrystals, which can provide direct pathways for electron transport, but the interface area between polymer and nanocrystals is limited. We have demonstrated that through interface modification with effective molecules, the photovoltaic performance in both device structures can be largely improved by enhancing charge separation and suppressing interface recombination rate in the polymer/inorganic hybrids.
机译:在本文中,我们介绍了两种不同类型的聚合物/金属氧化物纳米晶体混合光伏电池。一种是聚(3-己基噻吩)(P3HT)/ TiO $ _2 $纳米棒混合体异质结(BHJ)太阳能电池,另一种是纳米结构的ZnO / P3HT混合太阳能电池。在BHJ混合太阳能电池中,分散的半导体纳米晶体导致聚合物与纳米晶体之间的界面面积增加,这可以有助于光生载流子的电荷分离,但以电子传输的形成不良的导电路径为代价。相反,纳米结构的混合太阳能电池通常由刚性连接的纳米晶体组成,可以为电子传输提供直接途径,但是聚合物与纳米晶体之间的界面面积有限。我们已经证明,通过用有效分子进行界面修饰,可以通过增强电荷分离和抑制聚合物/无机杂化体中的界面复合率来大大提高两种器件结构中的光伏性能。

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