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掺杂石墨烯电极在有机太阳能电池中的应用。

Doped graphene electrodes for organic solar cells.

机构信息

Department of Electrical Engineering and Computer Sciences, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Nanotechnology. 2010 Dec 17;21(50):505204. doi: 10.1088/0957-4484/21/50/505204. Epub 2010 Nov 23.

Abstract

In this work graphene sheets grown by chemical vapor deposition (CVD) with controlled numbers of layers were used as transparent electrodes in organic photovoltaic (OPV) devices. It was found that for devices with pristine graphene electrodes, the power conversion efficiency (PCE) is comparable to their counterparts with indium tin oxide (ITO) electrodes. Nevertheless, the chances for failure in OPVs with pristine graphene electrodes are higher than for those with ITO electrodes, due to the surface wetting challenge between the hole-transporting layer and the graphene electrodes. Various alternative routes were investigated and it was found that AuCl(3) doping on graphene can alter the graphene surface wetting properties such that a uniform coating of the hole-transporting layer can be achieved and device success rate can be increased. Furthermore, the doping both improves the conductivity and shifts the work function of the graphene electrode, resulting in improved overall PCE performance of the OPV devices. This work brings us one step further toward the future use of graphene transparent electrodes as a replacement for ITO.

摘要

在这项工作中,使用通过化学气相沉积(CVD)生长的具有可控层数的石墨烯片作为有机光伏(OPV)器件中的透明电极。研究发现,对于具有原始石墨烯电极的器件,其功率转换效率(PCE)可与具有氧化铟锡(ITO)电极的器件相媲美。然而,由于空穴传输层和石墨烯电极之间的表面润湿性挑战,具有原始石墨烯电极的 OPV 器件出现故障的几率高于具有 ITO 电极的器件。为此,研究人员探索了各种替代途径,发现石墨烯上的 AuCl(3)掺杂可以改变石墨烯表面的润湿性,从而可以实现空穴传输层的均匀涂覆,并提高器件的成功率。此外,掺杂既提高了导电性,又改变了石墨烯电极的功函数,从而提高了 OPV 器件的整体 PCE 性能。这项工作使我们朝着未来使用石墨烯透明电极替代 ITO 又迈进了一步。

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