首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Green-solvent processable semiconducting polymers applicable in additive-free perovskite and polymer solar cells: molecular weights, photovoltaic performance, and thermal stability
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Green-solvent processable semiconducting polymers applicable in additive-free perovskite and polymer solar cells: molecular weights, photovoltaic performance, and thermal stability

机译:绿色溶剂可加工半导体聚合物,适用于无添加剂的钙钛矿和聚合物太阳能电池:分子量,光伏性能和热稳定性

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摘要

In this study, we demonstrated the effects of the molecular weight (MW) of a green-solvent processable semiconducting polymer (asyPBTBDT) on its photovoltaic performance and device thermal stability in green processed devices for the first time. The asy-PBTBDT with a high MW(132 kDa) had the highest mh values (4.91 x 10(-3) cm(2)V(-1) s(-1) without dopants and 5.77 x 10(-3) cm(2)V(-1) s(-1) with dopants) as a result of increase in the p-p stacking along with MW as compared to lowMW asy-PBTBDTs (27 and 8 kDa). The high-MW asy-PBTBDT with a high mh achieved the best power conversion efficiencies of 18.2% and 20.0% for the undoped and doped states in PerSCs, respectively, and 5.7% in PSCs in green processed devices. Furthermore, the glass transition temperature increased with an increase in MW; this indicated an effective decrease in heat-induced morphological degradation in the photovoltaic devices. In addition, an increase in the chain density along with MW led to good robustness against humidity and oxygen.
机译:在这项研究中,我们首次证明了绿色溶剂可加工半导体聚合物(浅折)的分子量(MW)对绿色加工装置的光伏性能和器件热稳定性的影响。具有高MW(132kDA)的ASY-PBTBDT具有最高的MH值(4.91×10(-3)cm(2)V(-1)s(-1),无掺杂剂,5.77 x 10(-3)cm (2)与掺杂剂的V(-1)S(-1))由于PP堆叠与MW相比,与LowmW ASY-PBTBDT(27和8kDA)一起增加。具有高MH的高MW ASY-PBTBDT,在绿色加工器件中分别在PERSCS中的未掺杂和掺杂状态下的最佳功率转换效率为18.2%和20.0%,在PSC中的5.7%。此外,玻璃化转变温度随MW的增加而增加;这表明光伏器件中的热诱导形态降解的有效降低。此外,链密度随着湿度和氧气的良好鲁棒性而增加。

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