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用于高性能染料敏化太阳能电池的基于石墨烯的光阳极。

Graphene based photoanode for DSSCs with high performances.

作者信息

Tang Bo, Yu Haogang, Peng Haoping, Wang Zhengwei, Li Sen, Ma Tingting, Huang Weiqiu

机构信息

School of Petroleum Engineering, Changzhou University Changzhou 213016 People's Republic of China

出版信息

RSC Adv. 2018 Aug 16;8(51):29220-29227. doi: 10.1039/c8ra05211e. eCollection 2018 Aug 14.

Abstract

Graphene assisted photoanodes are promising because of the high performance of the resulting dye sensitized solar cells (DSSCs). A photoanode with a three-layer structure is prepared in this study and the synergy between each layer was found to play a vital role in its photovoltaic properties. The influence of interface contact between the transport layer and work layer is revealed. After ameliorating the interface contact level (enhancing the electron transport ability), the functions of the adopted reduced graphene oxide (RGO) and three-dimensional graphene networks (3DGNs) in the transport layer and work layer, respectively, can be made full use of. In order to further enhance the scattering ability for the incident light and improve the adsorption ability for dye molecules, a scattering layer based on the RGO-TiO is added in the photoanode. After a comprehensive optimization (including the types of functional groups and mass fractions of the RGO in the work layer and scattering layer), the resulting power conversion efficiency reaches 11.8%, which is much higher than that of previous reported graphene modified DSSCs.

摘要

石墨烯辅助光阳极很有前景,因为由此产生的染料敏化太阳能电池(DSSC)具有高性能。本研究制备了一种具有三层结构的光阳极,发现各层之间的协同作用对其光伏性能起着至关重要的作用。揭示了传输层与工作层之间界面接触的影响。改善界面接触水平(提高电子传输能力)后,分别在传输层和工作层中采用的还原氧化石墨烯(RGO)和三维石墨烯网络(3DGN)的功能可以得到充分利用。为了进一步提高对入射光的散射能力并提高对染料分子的吸附能力,在光阳极中添加了基于RGO-TiO的散射层。经过全面优化(包括工作层和散射层中RGO的官能团类型和质量分数)后,得到的功率转换效率达到11.8%,远高于先前报道的石墨烯修饰DSSC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06b9/9084500/d0ca5c40ce45/c8ra05211e-f1.jpg

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