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P3HT-Based Polymer Solar Cells with 8.25% Efficiency Enabled by a Matched Molecular Acceptor and Smart Green-Solvent Processing Technology

机译:匹配的分子受体和智能的绿色溶剂处理技术可实现基于P3HT的聚合物太阳能电池,效率达到8.25%

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摘要

A novel molecular acceptor of TrBTIC (2,7,12-tris((2-(3-oxo-2,3-dihydroinden-1-ylidene)malononitrile-7-benzothiadiazole-2-)truxene) is designed by attaching the 2-(3-oxo-2,3-dihydroinden-1-ylidene)malononitrile-benzothiadiazole (BTIC) electron-deficient unit to an electron-rich truxene core. TrBTIC has excellent solubility in common solvents and features good energy level matching with poly(3-hexylthiophene) (P3HT). Interestingly, P3HT can be readily dissolved in warm 1,2,4-trimethylbenzene (TMB), a green solvent, but crystallizes slowly with long-term aging in TMB at room temperature. A prephase separation can thus occur before active blend film deposition, and the separation degree can be easily controlled by varying the aging time. After 40 min of aging, the resulting active blend has the most appropriate phase separation with uniform nanowires, which forms favorable interpenetrating networks for exciton dissociation and charge transport. As a result, the device performance is improved from 6.62% to 8.25%. Excitingly, 8.25% is a new record for P3HT-based solar cells. The study not only provides an efficient nonfullerene acceptor for matching P3HT donors but also develops a promising processing technology to realize high-performance P3HT-based polymer solar cells with an efficiency over 8%.
机译:TrBTIC(2,7,12-tris((2-(3-oxo-2,3-dihydroinden-1-ylidene)malononitrile-7-benzothiadiazole-2-)truxene)的新型分子受体被设计-(3-氧代-2,3-二氢茚-1-基)丙二腈-苯并噻二唑(BTIC)缺电子单元,形成富电子的戊烯核.TrBTIC在普通溶剂中具有优异的溶解度,并具有与聚(有趣的是,P3HT可以容易地溶于绿色的溶剂1,2,4-三甲基苯(TMB)中,但在室温下在TMB中长期老化后会缓慢结晶。因此,在活性共混物膜沉积之前就发生了,并且可以通过改变老化时间来容易地控制分离程度;在老化40分钟后,所得到的活性共混物具有最合适的相分离方式,具有均匀的纳米线,从而形成了用于激子解离的良好互穿网络和电荷传输,从而影响设备性能从6.62%降至8.25%。令人兴奋的是,8.25%是基于P3HT的太阳能电池的新记录。该研究不仅为匹配P3HT供体提供了一种有效的非富勒烯受体,而且还开发了一种有前途的加工技术,以实现效率超过8%的高性能P3HT基聚合物太阳能电池。

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