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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Charge-Transfer States and Upper Limit of the Open-Circuit Voltage in Polymer:Fullerene Organic Solar Cells
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Charge-Transfer States and Upper Limit of the Open-Circuit Voltage in Polymer:Fullerene Organic Solar Cells

机译:聚合物:富勒烯有机太阳能电池的电荷转移状态和开路电压上限

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摘要

The power conversion efficiency of polymer:fullerene bulk heterojunction solar cells depends on the generated photocurrent and photovoltage. Here we show, using the thermodynamic theory of detailed balance, that the photovoltage in particular is limited by the presence of polymer:fullerene material interaction, resulting in the formation of a weak donor–acceptor charge transfer complex (CTC). Excited CTCs, or charge transfer (CT) states, are visible in highly sensitive measurements of the absorption and photovoltaic action spectrum, or in photoluminescence and electroluminescence measurements. It is shown that photovoltaic and electroluminescent actions of the polymer:fullerene CTC are related by a reciprocity relation. This relation reproduces the measured open-circuit voltage ($V_{{rm oc}}$) of the photovoltaic device under solar conditions. Also, the temperature and illumination intensity dependence of $V_{{rm oc}}$ is reproduced by the theory. Assuming perfect conditions for charge generation and recombination, a maximum obtainable $V_{{rm oc}}$ value in function of polymer:fullerene CTC properties is derived.
机译:聚合物:富勒烯本体异质结太阳能电池的功率转换效率取决于所产生的光电流和光电压。在这里,我们使用详细平衡的热力学理论表明,光电压特别受聚合物:富勒烯材料相互作用的存在限制,导致形成弱的供体-受体电荷转移复合物(CTC)。兴奋的CTC或电荷转移(CT)状态在吸收和光伏作用谱的高灵敏度测量中,或在光致发光和电致发光测量中可见。结果表明,聚合物:富勒烯CTC的光伏和电致发光作用是通过互易关系建立的。该关系再现了在太阳条件下光伏装置的测得的开路电压($ V _ {{rm oc}} $)。同样,该理论还再现了温度和照度强度$ V _ {{rm oc}} $。假定产生电荷和重组的理想条件,得出了聚合物:富勒烯CTC性能的函数中可获得的最大可得$ V _ {{rm oc}} $值。

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