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Improved efficiency of DTGe(FBTTh2)(2)-based solar cells by using macromolecular additives: How macromolecular additives versus small additives influence nanoscale morphology and photovoltaic performance

机译:通过使用大分子添加剂提高基于DTGe(FBTTh2)(2)的太阳能电池的效率:大分子添加剂与小添加剂如何影响纳米级形态和光伏性能

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In order to address the question of how macromolecular additive processing in recent years, sparsely used, affects structural organization and photovoltaic performance, various macromolecular additives (PS, PDMS, and PMMA) vis-a-vis small DIO additive are applied to a model bulk-heterojunction (BHJ) system based on DTGe(FBTTh2)(2). These additives have been shown to exhibit a strong influence on film morphology as a function of additives type, with significant changes in packing orientation, film roughness, and feature size observed, leading to improved power-conversion efficiency (PCE). Interestingly, an unexpectedly large increase in PCEs, from 6.03% to 7.07%, is demonstrated upon adding 1% (w/w) PMMA to DTGe(FBTTh2)(2):PC61BM devices, possessing an even greater PCE than DIO. In addition, when 0.2% (v/v) DIO is added to DTGe(FBTTh2)(2):PC71BM, several key device metrics increase, producing the highest PCE of 7.55% for DTGe(FBTTh2)(2)-based devices to date. In the present work, PMMA is confirmed to provide a highly effective means for controlling morphology and significantly enhancing PCEs. Not only do the results from this study will aid in understanding the mechanisms underlying the impact of macromolecular additive processing, but they will also be key in leading to future studies that will elucidate the driving forces behind and exact points of interaction of macromolecular additives. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了解决近年来稀疏使用的高分子添加剂加工如何影响结构组织和光伏性能的问题,将各种高分子添加剂(PS,PDMS和PMMA)与小型DIO添加剂进行了对比基于DTGe(FBTTh2)(2)的异质结(BHJ)系统。这些添加剂已显示出对薄膜形态的强烈影响,这是添加剂类型的函数,在堆积方向,薄膜粗糙度和特征尺寸方面都有显着变化,从而提高了功率转换效率(PCE)。有趣的是,在DTGe(FBTTh2)(2):PC61BM设备中添加1%(w / w)PMMA时,PCE的数量从6.03%增至7.07%,这出乎意料地大大增加,其PCE比DIO还要大。此外,当将DTGe(FBTTh2)(2):PC71BM添加0.2%(v / v)DIO时,几个关键设备指标将增加,从而使基于DTGe(FBTTh2)(2)的设备的最高PCE达到7.55%。日期。在目前的工作中,PMMA被证实可以提供一种有效的方法来控制形态并显着增强PCE。这项研究的结果不仅有助于理解大分子添加剂加工的潜在影响机理,而且对于将来开展研究阐明大分子添加剂背后的驱动力和相互作用的确切点也至关重要。 (C)2016 Elsevier Ltd.保留所有权利。

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