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用于染料敏化太阳能电池的含锌卟啉发色团的无金属有机染料超分子组装体。

A supramolecular assembly of metal-free organic dye with zinc porphyrin chromophore for dye-sensitized solar cells.

作者信息

Jia Hai-Lang, Huang Mao-Zhan, Peng Zhi-Jie, Wang Dong-Ming, Zhang Guo-Hua, Guan Ming-Yun

机构信息

School of Chemical and Environmental Engineering, Jiangsu University of Technology, Changzhou 213001, P. R. China.

出版信息

Dalton Trans. 2017 Nov 7;46(43):15124-15129. doi: 10.1039/c7dt03373g.

Abstract

Two porphyrin chromophores, P1 and P2, were prepared and used as antenna units to coordinate with a metal-free organic dye, JH1, containing pyridine groups. This supramolecular self-assembly strategy can not only effectively improve the light-harvesting ability of the devices but also effectively reduces electron recombination by preventing I of the electrolyte from penetrating into the TiO surface. The DSSC based on JH1 showed a PCE of 2.46%, with a V of 615 mV, J of 6.54 mA cm, and FF of 61.18%. After supramolecular self-assembly, the J and V of the device were greatly improved. Specifically for the device based on JH1 + P2, the PCE reached 4.39%, which is about 78% greater than the PCE of the device based on JH1; this is mainly due to the J increase of 2.85 mA cm and the V increase of 93 mV. Compared to co-sensitization, supramolecular self-assembly does not require tedious optimization steps; thus, this may be a promising and convenient way to improve the overall performance of DSSCs.

摘要

制备了两个卟啉发色团P1和P2,并将其用作天线单元,与含吡啶基团的无金属有机染料JH1配位。这种超分子自组装策略不仅可以有效提高器件的光捕获能力,还能通过防止电解质中的I渗透到TiO表面来有效减少电子复合。基于JH1的染料敏化太阳能电池(DSSC)的光电转换效率(PCE)为2.46%,开路电压(V)为615 mV,短路电流密度(J)为6.54 mA/cm²,填充因子(FF)为61.18%。超分子自组装后,器件的J和V得到了极大提高。特别是对于基于JH1 + P2的器件,PCE达到4.39%,比基于JH1的器件的PCE高出约78%;这主要是由于J增加了2.85 mA/cm²,V增加了93 mV。与共敏化相比,超分子自组装不需要繁琐的优化步骤;因此,这可能是提高DSSC整体性能的一种有前景且便捷的方法。

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