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A Mechanistic Understanding of a Binary Additive System to Synergistically Boost Efficiency in All-Polymer Solar Cells

机译:机械理解二元添加剂系统以协同提高全聚合物太阳能电池的效率

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摘要

All-polymer solar cells are herein presented utilizing the PBDTTT-CT donor and the P(NDI2OD-T2) acceptor with 1,8-diiodooctane (DIO) and 1-chloronaphthalene (CN) binary solvent additives. A systematic study of the polymer/polymer bulk heterojunction photovoltaic cells processed from the binary additives revealed that the microstructures and photophysics were quite different from those of a pristine system. The combination of DIO and CN with a DIO/CN ratio of 3:1 (3 vol% DIO, 1 vol% CN and 96 vol% o-DCB) led to suitable penetrating polymer networks, efficient charge generation and balanced charge transport, which were all beneficial to improving the efficiency. This improvement is attributed to increase in power conversion efficiency from 2.81% for a device without additives to 4.39% for a device with the binary processing additives. A detailed investigation indicates that the changes in the polymer:polymer interactions resulted in the formation of a percolating nasnoscale morphology upon processing with the binary additives. Depth profile measurements with a two-dimensional grazing incidence wide-angle X-ray scattering confirm this optimum phase feature. Furthermore impedance spectroscopy also finds evidence for synergistically boosting the device performance.
机译:本文展示了利用PBDTTT-CT供体和P(NDI2OD-T2)受体以及1,8-二碘辛烷(DIO)和1-氯萘(CN)二元溶剂添加剂的全聚合物太阳能电池。对由二元添加剂加工而成的聚合物/聚合物本体异质结光伏电池的系统研究表明,其微观结构和光物理性质与原始体系完全不同。 DIO和CN的DIO / CN比为3:1(DIO为3体积%,CN为1体积%,o-DCB为96体积%)的组合导致了合适的渗透聚合物网络,有效的电荷产生和平衡的电荷传输,都有助于提高效率。这种改进归因于功率转换效率从无添加剂的设备的2.81%提高到具有二元加工添加剂的设备的4.39%。详细的研究表明,在用二元添加剂加工时,聚合物:聚合物相互作用的变化导致形成渗滤的纳尺度形貌。二维轮廓入射广角X射线散射的深度剖面测量结果证实了这一最佳相位特征。此外,阻抗谱还发现了协同提升器件性能的证据。

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