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首页> 外文期刊>Journal of Applied Physics >Control of nanocrystal surface defects for efficient charge extraction in polymer-ZnO photovoltaic systems
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Control of nanocrystal surface defects for efficient charge extraction in polymer-ZnO photovoltaic systems

机译:控制纳米晶体表面缺陷以在聚合物-ZnO光伏系统中有效提取电荷

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摘要

Factors determining the photovoltaic device performance of blends of regioregular poly(3-hexylthiophene) (rr-P3HT) and ZnO nanostructures are reported. A decrease in the crystallinity of rr-P3HT upon the formation of ZnO (through hydrolysis) is observed through optical absorption spectroscopy. Increasing the humidity level for the ZnO formation leads to a decrease in the photoluminescence of the rr-P3HT:ZnO blend together with improved photovoltaic device performance. This is attributed to more efficient charge extraction due to a decrease in the radiative trap sites on the ZnO surface as a result of decreasing ZnO surface area with increasing humidity level.
机译:报告了决定区域规整聚(3-己基噻吩)(rr-P3HT)和ZnO纳米结构混合物的光电器件性能的因素。通过光吸收光谱观察到在形成ZnO(通过水解)时rr-P3HT的结晶度降低。用于ZnO形成的湿度水平的增加导致rr-P3HT:ZnO共混物的光致发光的减少以及光伏器件性能的改善。这归因于由于随着湿度水平的增加而减少ZnO表面积而导致的ZnO表面上的辐射俘获位点的减少,从而使电荷提取更加有效。

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