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Efficient ternary polymer solar cells with a parallel-linkage structure

机译:具有并联结构的高效三元聚合物太阳能电池

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A series of ternary polymer solar cells (PSCs) were fabricated based on two narrow bandgap polymers PTB7 and PBDT-TS1 as the donors and PC71BM as the acceptor. The performances of the ternary PSCs monotonically increased along with the PBDT-TS1 doping ratio, up to 80 wt% in the donors. The optimum power conversion efficiency (PCE) achieved for the ternary PSCs was 7.91% with an open circuit voltage (V-OC) of 0.76 V, a short circuit current density (J(SC)) of 18.85 mA cm(-2) and a fill factor (FF) of 55.2% for the active layers with an 80 wt% PBDT-TS1 doping ratio in the donors. The optimized ternary PSCs show a 12.8% improvement compared to the optimum PCE of 7.01% for the binary PSCs with PBDT-TS1 as the donor and a 28.2% improvement compared with the optimum PCE of 6.17% for the binary PSCs with PTB7 as the donor. The FFs of all the ternary PSCs are larger than 54%, indicating efficient charge carrier transport channels in the ternary active layers. The energy or charge transfer between PTB7 and PBDT-TS1 should be neglected according to the investigation of the photoluminescence spectra of the blend films and the current density-voltage (J-V) curves of devices without the acceptor in the active layers. The ternary PSCs should be parallel-linkage structures with the donors independently working with the acceptor, which may be the most promising strategy for obtaining highly efficient ternary PSCs.
机译:基于两种窄带隙聚合物PTB7和PBDT-TS1作为施主,PC71BM作为受体,制造了一系列三元聚合物太阳能电池(PSC)。三元PSC的性能随PBDT-TS1掺杂比例单调提高,在供体中高达80 wt%。三元PSC的最佳功率转换效率(PCE)为7.91%,开路电压(V-OC)为0.76 V,短路电流密度(J(SC))为18.85 mA cm(-2),并且供体中具有80 wt%PBDT-TS1掺杂比的有源层的填充因子(FF)为55.2%。与以PBDT-TS1为供体的二元PSC的最佳PCE为7.01%相比,优化的三元PSC改善了12.8%,而以PTB7为供体的二元PSC的最佳PCE则为6.17%改善了28.2%。 。所有三元PSC的FF都大于54%,表明在三元有源层中有效的载流子传输通道。根据对混合膜的光致发光光谱的研究以及有源层中没有受体的器件的电流密度-电压(J-V)曲线,应忽略PTB7与PBDT-TS1之间的能量或电荷转移。三元PSC应该是平行链结构,供体独立与受体协同工作,这可能是获得高效三元PSC的最有希望的策略。

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