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Substrate Temperature Effect on Charge Transport Performance of ZnO Electron Transport Layer Prepared by a Facile Ultrasonic Spray Pyrolysis in Polymer Solar Cells

机译:衬底温度对聚合物太阳能电池中超声喷雾热解制备ZnO电子传输层电荷传输性能的影响

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摘要

A novel ultrasonic spray pyrolysis for high-quality ZnO films based on zinc-ammonia solution was achieved in air. To investigate the structural and optical properties as well as the performance of polymer solar cells (PSCs), ZnO films at different substrate temperatures and thicknesses were prepared. The performance of poly(3-hexylthiophene):[6,6]-phenyl C61-butyric acid methyl ester (P3HT:PCBM) based PSC was found to be improved due to the ZnO films. The crystal structure and roughness of the ZnO films fabricated at different temperatures were found to affect the performance of PSCs. The optimized power conversion efficiency was found to be maximum for PSCs with ZnO films prepared at 200°C. The growth process of these ZnO films is very simple, cost-effective, and compatible for larger-scale PSC preparation. The precursor used for spray pyrolysis is environmentally friendly and helps to achieve ZnO film preparation at a relative low temperature.
机译:在空气中实现了一种基于锌-氨溶液的高质量ZnO薄膜的新型超声喷雾热解。为了研究聚合物太阳能电池(PSC)的结构和光学性能以及性能,制备了不同衬底温度和厚度的ZnO薄膜。发现基于ZnO薄膜可改善基于聚(3-己基噻吩):[6,6]-苯基C61-丁酸甲酯(P3HT:PCBM)的PSC的性能。发现在不同温度下制备的ZnO薄膜的晶体结构和粗糙度会影响PSC的性能。发现在200°C下制备的ZnO薄膜的PSC的最佳功率转换效率最高。这些ZnO薄膜的生长过程非常简单,具有成本效益,并且可用于大规模PSC制备。用于喷雾热解的前体对环境友好,有助于在相对较低的温度下制备ZnO膜。

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