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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Design of organic small molecules for photovoltaic application with high open-circuit voltage (V-oc)
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Design of organic small molecules for photovoltaic application with high open-circuit voltage (V-oc)

机译:具有高开路电压的光伏应用有机小分子的设计(V-OC)

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摘要

Open-circuit voltage (V-oc), as a key parameter, plays an important role in determining power conversion efficiency (PCE) of organic solar cells (OSCs). With the rapid development in OSCs based on small molecules, more and more attention has been paid to fabricate photovoltaic devices with high V-oc values by designing novel small molecule materials, which has pushed the highest V-oc values for single-junction OSCs based on small molecules as donors or acceptors to be 1.12 V and 1.36 V, respectively. In this review, recent advances with respect to photovoltaic materials applied in OSCs featuring high V-oc values will be summarized from two aspects: small molecule donors and small molecule acceptors. Moreover, we will systematically discuss the relationship between molecular structures of small molecule materials and V-oc values for OSCs, which will provide a guideline on the design of organic small molecule materials for obtaining photovoltaic devices with high V-oc values.
机译:作为关键参数的开路电压(V-OC)在确定有机太阳能电池(OSC)的电源转换效率(PCE)方面起着重要作用。 随着基于小分子的OSC的快速发展,通过设计新的小分子材料,通过设计新的小分子材料来制造具有高V-OC值的光伏器件的越来越多的关注,这已经推动了基于单结OSC的最高V-OC值 在小分子上分别为捐赠者或受体,分别为1.12 V和1.36 V. 在本文中,将从两个方面概括了具有高V-oc值的OSC中应用的光伏材料的最近进步将总结在两个方面:小分子供体和小分子受体。 此外,我们将系统地讨论小分子材料的分子结构与OSC的V-OC值之间的关系,这将提供有机小分子材料设计的指导,用于获得具有高V-OC值的光伏器件。

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