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首页> 外文期刊>ACS applied materials & interfaces >Fabrication and Characterization of Hybrid Organic-Inorganic Electron Extraction Layers for Polymer Solar Cells toward Improved Processing Robustness and Air Stability
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Fabrication and Characterization of Hybrid Organic-Inorganic Electron Extraction Layers for Polymer Solar Cells toward Improved Processing Robustness and Air Stability

机译:用于改进加工鲁棒性和空气稳定性的聚合物太阳能电池杂种有机无机电子提取层的制备与表征

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摘要

Organic-inorganic hybrid materials composed of bismuth and diaminopyridine are studied as novel materials for electron extraction layers in polymer solar cells using regular device structures. The hybrid materials are solution processed on top of two different low band gap polymers (PTB7 or PTB7-Th) as donor materials mixed with fullerene PC70BM as the acceptor. The intercalation of the hybrid layer between the photoactive layer and the aluminum cathode leads to solar cells with a power conversion efficiency of 7.8% because of significant improvements in all photovoltaic parameters, that is, short-circuit current density, fill factor, and open-circuit voltage, similar to the reference devices using ZnO as the interfacial layer. However when using thick layers of such hybrid materials for electron extraction, only small losses in photocurrent density are observed in contrast to the reference material ZnO of pronounced losses because of optical spacer effects. Importantly, these hybrid electron extraction layers also strongly improve the device stability in air compared with solar cells processed with ZnO interlayers. Both results underline the high potential of this new class of hybrid materials as electron extraction materials toward robust processing of air stable organic solar cells.
机译:由铋和二氨基吡啶组成的有机 - 无机杂交材料,作为使用常规装置结构的聚合物太阳能电池中的电子提取层的新材料。混合材料在两种不同的低频带隙聚合物(PTB7或PTB7-TH的顶部上,作为与富勒烯PC70BM混合的供体材料作为受体。相隔的光活性层和铝阴极之间的嵌入引线导致太阳能电池的功率转换效率为7.8%,因为所有光伏参数的显着改进,即短路电流密度,填充因子和开放电路电压,类似于使用ZnO作为界面层的参考装置。然而,当使用这种混合材料的厚层用于电子提取时,由于光学间隔效应,仅与发音损失的参考材料ZnO相比观察到光电流密度的小损失。重要的是,与用ZnO中间层加工的太阳能电池相比,这些混合电子提取层也强烈提高了空气中的装置稳定性。这两种结果都强调了这类新类混合材料的高潜力作为电子提取材料朝向空气稳定的有机太阳能电池的鲁棒处理。

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