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Promising Strategy To Improve Charge Separation in Organic Photovoltaics: Installing Permanent Dipoles in PCBM Analogues

机译:改善有机光伏电荷分离的有前途的策略:在PCBM类似物中安装永久偶极子

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摘要

A multidisciplinary approach involving organic synthesis and theoretical chemistry was applied to investigate a promising strategy to improve charge separation in organic photovoltaics: installing permanent dipoles in fullerene derivatives. First, a PCBM analogue with a permanent dipole in the side chain (PCBDN) and its reference analogue without a permanent dipole (PCBBz) were successfully synthesized and characterized. Second, a multiscale modeling approach was applied to investigate if a PCBDN environment around a central donor-acceptor complex indeed facilitates charge separation. Alignment of the embedding dipoles in response to charges present on the central donor-acceptor complex enhances charge separation. The good correspondence between experimentally and theoretically determined electronic and optical properties of PCBDN, PCBBz, and PCBM indicates that the theoretical analysis of the embedding effects of these molecules gives a reliable expectation for their influence on the charge separation process at a microscopic scale in a real device. This work suggests the following strategies to improve charge separation in organic photovoltaics: installing permanent dipoles in PCBM analogues and tuning the concentration of these molecules in an organic donor/acceptor blend.
机译:应用涉及有机合成和理论化学的多学科方法来研究改善有机光伏中电荷分离的有前途的策略:在富勒烯衍生物中安装永久偶极子。首先,成功地合成和表征了在侧链中具有永久偶极子的PCBM类似物(PCBDN)和其无永久偶极子的参考类似物(PCBBz)。其次,采用了多尺度建模方法来研究中央供体-受体复合物周围的PCBDN环境是否确实有助于电荷分离。响应存在于中央供体-受体复合体上的电荷,嵌入偶极子的排列增强了电荷分离。实验上和理论上确定的PCBDN,PCBBz和PCBM的电子和光学性质之间的良好对应关系表明,对这些分子的嵌入效应的理论分析给出了对它们在微观尺度上实际影响电荷分离过程的可靠预期。设备。这项工作提出了以下改善有机光伏电池电荷分离的策略:在PCBM类似物中安装永久偶极子并调节有机供体/受体混合物中这些分子的浓度。

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