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首页> 外文期刊>Advanced energy materials >Charge Transport and Recombination in Low-Bandgap Bulk Heterojunction Solar Cell using Bis-adduct Fullerene
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Charge Transport and Recombination in Low-Bandgap Bulk Heterojunction Solar Cell using Bis-adduct Fullerene

机译:使用双加合物富勒烯的低能隙体异质结太阳能电池中的电荷传输和复合。

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摘要

Charge transport and recombination are studied for organic solar cells fabricated using blends of polymer poly[(4,4′-bis(2-ethylhexyl)dithieno[3,2-b:2′,3′-d]silole)-2,6-diyl-alt-(4,7-bis(2-thienyl)-2,1,3-benzothiadiazole)-5,5′-diyl] (Si-PCPDTBT) with [6,6]-phenyl-C61-butyric acid methyl ester (mono-PCBM) and the bis-adduct analogue of mono-PCBM (bis-PCBM). The photocurrent of Si-PCPDTBT:bis-PCBM devices shows a strong square root dependence on the effective applied voltage. From the relationship between the photocurrent and the light intensity, we found that the square-root dependence of the photocurrent is governed by the mobility-lifetime (μτ) product of charge carriers while space-charge field effects are insignificant. The fill factor (FF) and short circuit current density (Jsc) of bis-PCBM solar cells show a considerable increase with temperature as compared to mono-PCBM solar cells. SCLC analysis of single carrier devices proofs that the mobility of both electrons and holes is significantly lowered when replacing mono-PCBM with bis-PCBM. The increased recombination in Si-PCPDTBT:bis-PCBM solar cells is therefore attributed to the low carrier mobilities, as the transient photovoltage measurements show that the carrier lifetime of devices are not significantly altered by using bis-PCBM instead of mono-PCBM.
机译:研究了使用聚合物聚[(4,4'-双(2-乙基己基)二硫代[3,2-b:2',3'-d] silole)-2,的共混物制备的有机太阳能电池的电荷传输和重组6-二基-alt-(4,7-双(2-噻吩基)-2,1,3-苯并噻二唑)-5,5'-二基](Si-PCPDTBT)与[6,6]-苯基-C61-丁酸甲酯(mono-PCBM)和mono-PCBM的双加合物类似物(bis-PCBM)。 Si-PCPDTBT:bis-PCBM器件的光电流对有效施加电压表现出很强的平方根依赖性。从光电流和光强度之间的关系,我们发现光电流的平方根依赖性受电荷载流子的迁移率-寿命(μ)乘积控制,而空间电荷场效应不明显。与单PCBM太阳能电池相比,bis-PCBM太阳能电池的填充系数(FF)和短路电流密度(Jsc)随温度显着增加。单载流子器件的SCLC分析证明,用bis-PCBM代替mono-PCBM时,电子和空穴的迁移率都大大降低。因此,Si-PCPDTBT:bis-PCBM太阳能电池复合的增加归因于载流子迁移率低,因为瞬态光电压测量表明,使用bis-PCBM代替mono-PCBM不会显着改变器件的载流子寿命。

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