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首页> 外文期刊>Macromolecules >In-Situ Growing CdS Single-Crystal Nanorods via P3HT Polymer as a Soft Template, for Enhancing Photovoltaic Performance
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In-Situ Growing CdS Single-Crystal Nanorods via P3HT Polymer as a Soft Template, for Enhancing Photovoltaic Performance

机译:通过P3HT聚合物作为软模板原位生长CdS单晶纳米棒,以提高光伏性能

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摘要

A novel method was used to synthesize CdS single-crystal nanorods directly in the presence of conjugated polymer poly(3-hexylthiophene-2,5-diyl) (P3FIT), where the P3HT is acting as a molecular template for geometrical manipulation of CdS nanocrystals and, in the meantime, as in efficient charge conductor in composite form. Such a templating process allows the CdS nanorods with various aspect ratios to be easily manufactured via a controlled solvency of a cosolvent Mixture, under which the conformational variation of the P3HT chain can be manipulated. The mechanism of in situ growth of high-aspect-ratio CdS nanorod is proposed based on spectroscopic analysis. A considerably improved PL quenching was detected for the nanorods and suggested a result of electronic coupling between the high-aspect-ratio CdS nanorods and the conducting polymer matrix. A photovoltaic device consisting of CdS nanorods with aspect ratio of ea. 16 and the conjugated polymer poly(3-hexylthiophene) was well assembled and showed a power conversion efficiency of as high as 2.9% under air mass (AM) 1.5 global solar conditions.
机译:在共轭聚合物聚(3-己基噻吩-2,5-二基)(P3FIT)存在的情况下,使用一种新方法直接合成CdS单晶纳米棒,其中P3HT用作CdS纳米晶体的几何操作的分子模板同时,如复合形式的高效电荷导体。这种模板化工艺允许通过助溶剂混合物的受控溶解度轻松制造具有各种纵横比的CdS纳米棒,在该溶液下可以控制P3HT链的构象变化。基于光谱分析,提出了高纵横比CdS纳米棒的原位生长机理。检测到纳米棒的PL淬灭得到显着改善,这表明高纵横比CdS纳米棒与导电聚合物基体之间发生电子耦合。由纵横比为ea的CdS纳米棒组成的光伏器件。如图16所示,共轭聚合物聚(3-己基噻吩)被很好地组装,并且在空气质量(AM)为1.5的全球太阳条件下显示出高达2.9%的功率转换效率。

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