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首页> 外文期刊>Japanese journal of applied physics >Simultaneous determination of electron and hole drift mobilities in working inverted organic solar cells: modulated photocurrent spectroscopy versus impedance spectroscopy
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Simultaneous determination of electron and hole drift mobilities in working inverted organic solar cells: modulated photocurrent spectroscopy versus impedance spectroscopy

机译:同时测定工作倒置有机太阳能电池中的电子和孔漂移迁移率:调制光电流光谱与阻抗光谱

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摘要

Applicability of modulated photocurrent (MPC) spectroscopy and impedance spectroscopy (IS) were examined both experimentally and numerically to simultaneous determination of electron and hole drift mobilities in working prototypical inverted organic photovoltaics (OPVs) of poly(3-hexylthiophene) (P3HT):1-(3-methoxycarbonyl)-propyl-1-phenyl-(6,6)C-61 (PCBM) bulk heterojunction (BHJ). Charge carriers were photoinjected in MPC measurements and were injected from electrodes in IS. The P3HT:PCBM composition of the BHJ was chosen so as to observe both electron and hole transits separately. Electron and hole transits were simultaneously observed in the inverted OPVs by means of MPC measurements, while only hole transit was observed by means of IS. The device simulation shows that the reason that electron transit was not observed in the inverted OPVs by means of IS is due to the electron injection barrier of 0.2 eV inevitably existed in the inverted OPVs.
机译:试验和数值检查调制光电流(MPC)光谱和阻抗光谱(AS)的适用性,以同时测定聚(3-己烯烯)(P3HT)的工作原型倒有机光伏(OPV)中的电子和孔漂移迁移率。 - (3-甲氧基羰基) - 丙基-1-苯基 - (6,6)C-61(PCBM)本体异质结(BHJ)。电荷载流子在MPC测量中进行光预示,并从电极注入。 P3HT:选择了BHJ的PCBM组成,以便分别观察电子和空穴速度。通过MPC测量在倒置OPV中同时观察到电子和空穴转运,而仅通过IS观察到孔交通。设备仿真表明,通过作为倒置OPV在倒置OPV中未观察到电子转运的原因是由于倒出的OPV中的> 0.2eV的电子注入屏障。

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