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Small molecules organic photovoltaic devices based on the planar heterojunction porphyrin derivates/fullerene

机译:基于平面异质结卟啉衍生物/富勒烯的小分子有机光伏器件

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摘要

In this paper, we studied of photoelectric properties of multilayer organic photovoltaic cells (OPV cells). The active organic layers consisted of a planar heterojunction between a layer of (meso-tetrakis(5-bromo-2-thienyl)porphyrin), (TBrTP) as electron donor (ED) and a layer fullerene molecules. For the manufacture of photovoltaic devices we use a the technique of high vacuum by thermal sublimation that allows multilayer devices realization easily by successive depositions, and it does not require solvents, achieving purer films with reproducible characteristics. The TBrTP allows achieving OPVCs exhibiting promising efficiencies when the ABL is the MoO_3/CuI DABL. The CuI improves the current in the organic layer by one order of magnitude, which allows decreasing the series resistance of the OPVCs and therefore improving the OPVCs.
机译:在本文中,我们研究了多层有机光伏电池(OPV电池)的光电性能。活性有机层由(间-四(5-溴-2-噻吩基)卟啉)(TBrTP)作为电子供体(ED)层与富勒烯分子层之间的平面异质结组成。对于光生伏打器件的制造,我们使用通过热升华实现的高真空技术,该技术允许通过连续沉积轻松实现多层器件,并且不需要溶剂,从而获得具有可再现特性的纯净薄膜。当ABL为MoO_3 / CuI DABL时,TBrTP可以实现展现出有希望的效率的OPVC。 CuI将有机层中的电流提高了一个数量级,这允许降低OPVC的串联电阻,从而改善OPVC。

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