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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Concentration gradient P3OT/PCBM photovoltaic devices fabricated by thermal interdiffusion of separately spin-cast organic layers
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Concentration gradient P3OT/PCBM photovoltaic devices fabricated by thermal interdiffusion of separately spin-cast organic layers

机译:通过分别旋转浇铸的有机层的热扩散制造的浓度梯度P3OT / PCBM光伏器件

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摘要

A series of organic photovoltaic devices consisting of concentration gradients of poly (3-octylthiophene) (P3OT) and [6,6]-phenyl-C-61 butyric acid methyl ester (PCBM) were fabricated by thermally-induced interdiffusion of consecutively spin-cast layers of P3OT and PCBM from solvents of chloroform and pyridine, respectively. The device performance was evaluated as a function of the layer thicknesses, interdiffusion temperature, and interdiffusion time. A maximum power conversion efficiency of 1.0% under AM1.5G simulated solar spectrum was obtained for 70nm P3OT thickness, 45nm PCBM thickness, and interdiffusion at 150 degrees C for 20 min. Auger spectroscopy depth profiling measurements indicated that the optimal devices consist of concentration gradients of P3OT and PCBM extending across the entire film in opposite directions.
机译:通过连续旋转自旋的热诱导互扩散,制造了一系列由聚(3-辛基噻吩)(P3OT)和[6,6]-苯基-C-61丁酸甲酯(PCBM)浓度梯度组成的有机光伏器件。分别用氯仿和吡啶的溶剂浇铸P3OT和PCBM层。根据层厚度,互扩散温度和互扩散时间来评估器件性能。对于70nm P3OT厚度,45nm PCBM厚度以及在150摄氏度下互扩散20分钟,在AM1.5G模拟太阳光谱下获得的最大功率转换效率为1.0%。俄歇光谱深度剖析测量表明,最佳装置由P3OT和PCBM的浓度梯度以相反的方向贯穿整个薄膜组成。

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