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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 >Correlation between charge carriers mobility and nanomorphology in a blend of P3HT/PCBM bulk heterojunction solar cell: Impact on recombination mechanisms
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Correlation between charge carriers mobility and nanomorphology in a blend of P3HT/PCBM bulk heterojunction solar cell: Impact on recombination mechanisms

机译:P3HT / PCBM体异质结太阳能电池混合物中载流子迁移率与纳米形态之间的相关性:对复合机制的影响

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摘要

Sandwich configurations consisting of hole-only and electron-only devices are employed to study the transport properties of polymer/fullerene blended material. Upon thermal annealing at 150 °C and subsequent device characterisations a direct correlation between solar cell device power conversion efficiency and charge carrier mobilities is identified. The highest power conversion efficiency reported herein resulted from the electron to hole mobility ratio of 4.78. This ratio further reduces to 0.357 at 175 °C as a result of the deterioration of electron mobility at the same time as enhancement in hole carrier mobility with no further improvement in PCE. Effects of thermal annealing on trap density reveal that the trap assisted recombination is more dominant as compared to the bimolecular recombination. Furthermore such a mechanism enhances as a result of increasing trap density at higher annealing temperatures. The effect of light intensity on the open circuit voltage V_(oc) further verifies that the dominant recombination process is through trap assisted recombination.
机译:采用仅由空穴和仅由电子组成的三明治结构来研究聚合物/富勒烯共混材料的传输性能。在150°C下进行热退火并进行后续器件表征后,即可确定太阳能电池器件功率转换效率与电荷载流子迁移率之间的直接相关性。本文报道的最高功率转换效率来自4.78的电子空穴迁移率。由于在提高空穴载流子迁移率的同时电子迁移率下降而PCE没有进一步改善的同时,该比率在175℃下进一步降低至0.357。热退火对陷阱密度的影响表明,与双分子重组相比,陷阱辅助重组更为主要。此外,由于在较高的退火温度下增加了陷阱密度,因此提高了这种机理。光强度对开路电压V_(oc)的影响进一步验证了主要的重组过程是通过陷阱辅助重组。

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