首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A new class of three-dimensional, p-type, spirobifluorene-modified perylene diimide derivatives for small molecular-based bulk heterojunction organic photovoltaic devices
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A new class of three-dimensional, p-type, spirobifluorene-modified perylene diimide derivatives for small molecular-based bulk heterojunction organic photovoltaic devices

机译:用于小分子基本体异质结有机光伏器件的新型三维,p型螺二芴修饰的per二酰亚胺衍生物

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摘要

A new class of non-planar and three-dimensional spirobifluorene-modified perylene diimide compounds has been successfully designed and synthesized. The functionalization of the perylene diimide core with different spirobifluorene moieties can alter the molecular geometry as well as extend the spectral coverage into the red region, in addition, these compounds can be utilized as donor materials in combination with fullerene to form bulk heterojunctions, and particularly efficient organic photovoltaic (OPV) devices demonstrating high open-circuit voltages of 0.97 V and a power conversion efficiencies of up to 4% have been prepared. These values are the highest among the cells utilizing p-type perylene diimide as photoactive material in OPV devices. This work opens up a new avenue for the design and synthesis of a new class of p-type perylene diimide compounds that are promising candidates as donor materials in the fabrication of OPV devices.
机译:已经成功设计和合成了新型的非平面和三维螺双芴改性的per二酰亚胺化合物。带有不同螺二芴基部分的per二酰亚胺核的官能化可以改变分子的几何形状,并将光谱覆盖范围扩展到红色区域,此外,这些化合物可以与富勒烯一起用作施主材料,形成本体异质结,特别是已经准备了具有0.97 V的高开路电压和高达4%的功率转换效率的高效有机光伏(OPV)器件。这些值是在OPV器件中使用p型OP二酰亚胺作为光敏材料的电池中最高的。这项工作为新型p型per二酰亚胺化合物的设计和合成开辟了一条新途径,有望成为OPV器件制造中的供体材料。

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