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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Gaining further insight into the effects of thermal annealing and solvent vapor annealing on time morphological development and degradation in small molecule solar cells
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Gaining further insight into the effects of thermal annealing and solvent vapor annealing on time morphological development and degradation in small molecule solar cells

机译:进一步了解热退火和溶剂蒸汽退火对时间形态发育和小分子太阳能电池降解的影响

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摘要

Numerous articles on thermal annealing (TA) and solvent vapor annealing (SVA) treatments have shown that both strategies effectively improve bulk morphology, reduce carrier recombination and thus improve photovoltaic performance of bulk heterojunction (BHJ) organic solar cells (OSCs). In previous work, we found that both TA and SVA treated devices based on a blend composed of a 3-ethyl-2-thioxothiazolidin-4-one containing molecule as donor (named DRCN5T) and [6,6]-phenyl-C-71-butyric acid methyl ester (PC70BM) as acceptor show the similar photovoltaic performance, but their bulk microstructures are difference. Here employing in situ photoluminescence (PL) setup and X-ray scattering technologies, we found that the early stages of SVA remarkably affect the surface of film, and in contrast TA affects the whole bulk. Meanwhile, a plurality of experimental results all further confirm the different thermodynamics and kinetics of morphology evolution processed either by TA treatment or SVA treatment. Importantly, it was found that the SVA-treated film showed the increased photodegradation in devices as compared to the TA-treated layer, resulting from obvious bulk morphology changes under illumination over 500 hours. The aim is to provide comprehensive insight into the influence of TA and SVA on time morphological evolution and degradation in OSCs.
机译:热退火(TA)和溶剂蒸汽退火(SVA)治疗的许多制品表明,两种策略有效地改善了体形态,降低了载体重组,从而提高了本体异质结(BHJ)有机太阳能电池(OSC)的光伏性能。在先前的工作中,我们发现基于由3-乙基-2-噻嗪唑烷-4-含有供体(名为DRCN5T)的3-乙基-2-噻嗪唑烷-4-on的混合物和[6,6] - 苯基-C-的TA和SVA处理的装置71-丁酸甲酯(PC70BM)作为受体显示相似的光伏性能,但它们的堆积微观结构是差异。在这里采用原位光致发光(PL)设置和X射线散射技术,我们发现SVA的早期阶段显着影响薄膜表面,并且在对比度TA影响整个散装。同时,多种实验结果均进一步证实了通过TA治疗或SVA治疗处理的不同热力学和形态学进化的动力学。重要的是,发现SVA处理的薄膜在与TA处理层相比,在装置上显示出的光降解增加,从500小时内照明的明显散装形态变化导致。目的是提供综合深入了解TA和SVA对OSC中的时间形态演化和降解的影响。

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