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Fullerene Derivatives as Electron Acceptors for Organic Photovoltaic Cells

机译:富勒烯衍生物作为有机光伏电池的电子受体

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Energy is currently one of the most important problems humankind faces. Depletion of traditional energy sources such as coal and oil results in the need to develop new ways to create, transport, and store electricity. In this regard, the sun, which can be considered as a giant nuclear fusion reactor, represents the most powerful source of energy available in our solar system. For photovoltaic cells to gain widespread acceptance as a source of clean and renewable energy, the cost per watt of solar energy must be decreased. Organic photovoltaic cells, developed in the past two decades, have potential as alternatives to traditional inorganic semiconductor photovoltaic cells, which suffer from high environmental pollution and energy consumption during production. Organic photovoltaic cells are composed of a blended film of a conjugated-polymer donor and a soluble fullerene-derivative acceptor sandwiched between a poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate)-coated indium tin oxide positive electrode and a low-work-function metal negative electrode. Considerable research efforts aim at designing and synthesizing novel fullerene derivatives as electron acceptors with up-raised lowest unoccupied molecular orbital energy, better light-harvesting properties, higher electron mobility, and better miscibility with the polymer donor for improving the power conversion efficiency of the organic photovoltaic cells. In this paper, we systematically review novel fullerene acceptors synthesized through chemical modification for enhancing the photovoltaic performance by increasing open-circuit voltage, short-circuit current, and fill factor, which determine the performance of organic photovoltaic cells.
机译:能源目前是人类面临的最重要问题之一。煤炭和石油等传统能源的枯竭导致需要开发新的方式来发电,运输和存储电力。在这方面,可以被视为巨型核聚变反应堆的太阳代表了我们太阳系中可用的最强大的能源。为了使光伏电池作为清洁和可再生能源的来源得到广泛接受,必须降低每瓦太阳能的成本。在过去的二十年中开发的有机光伏电池具有替代传统的无机半导体光伏电池的潜力,传统的无机半导体光伏电池在生产过程中遭受高环境污染和能源消耗。有机光伏电池由共轭聚合物给体和可溶性富勒烯衍生物受体的混合膜组成,该膜夹在聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)包覆的铟锡氧化物正电极与低耗能之间功能金属负极。大量的研究工作旨在设计和合成新颖的富勒烯衍生物作为电子受体,具有更高的最低未占据分子轨道能量,具有更好的光捕获特性,更高的电子迁移率以及与聚合物供体的更好的混溶性,从而提高了有机物的功率转换效率光伏电池。在本文中,我们系统地综述了通过化学修饰合成的新型富勒烯受体,它们通过增加开路电压,短路电流和填充因子来增强光伏性能,从而决定了有机光伏电池的性能。

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