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基于具有延伸至近红外区域光电流的极窄带隙聚铂炔的聚合物太阳能电池。

Polymer solar cells based on very narrow-bandgap polyplatinynes with photocurrents extended into the near-infrared region.

作者信息

Wang Xing-Zhu, Wong Wai-Yeung, Cheung Kai-Yin, Fung Man-Kin, Djurisić Aleksandra B, Chan Wai-Kin

机构信息

Department of Chemistry and Centre for Advanced Luminescence Materials, Hong Kong Baptist University, Waterloo Road, Hong Kong, P. R. China.

出版信息

Dalton Trans. 2008 Oct 28(40):5484-94. doi: 10.1039/b803467b. Epub 2008 Jun 18.

DOI:10.1039/b803467b
PMID:19082032
Abstract

The synthesis, characterization and photophysics of some solution-processable intensely coloured polyplatinynes functionalized with the thienopyrazine-thiophene hybrid spacer and their model molecular complexes are described. These metallated polymers possess extremely low bandgaps of 1.47-1.50 eV, which extend towards the near-infrared (NIR) range of the solar spectrum, and represent the lowest optical bandgaps ever reported for metallopolyynes in the literature. Both polymers can be used to fabricate efficient solar cells with power conversion efficiencies (PCEs) of up to 0.63% under air mass (AM1.5) simulated solar illumination, and the possibility of covering the 600-900 nm solar-radiation range to harvest photocurrent has been demonstrated. The influence of the thienyl core as well as its substituent group, on the optical and photovoltaic behavior of these metallopolymers was investigated in detail. The power dependencies of the solar cell parameters (including the short-circuit current density, open-circuit voltage, fill-factor and PCE) were also studied. The present work offers an attractive avenue towards conjugated materials with broad solar absorptions and demonstrates the potential of metallopolyynes for both visible and NIR light power generation.

摘要

描述了一些用噻吩并吡嗪 - 噻吩杂化间隔基官能化的可溶液加工的深色聚铂炔及其模型分子配合物的合成、表征和光物理性质。这些金属化聚合物具有1.47 - 1.50 eV的极低带隙,延伸至太阳光谱的近红外(NIR)范围,是文献中报道的金属聚炔类化合物有史以来最低的光学带隙。两种聚合物都可用于制造高效太阳能电池,在空气质量(AM1.5)模拟太阳光照下功率转换效率(PCE)高达0.63%,并且已经证明了覆盖600 - 900 nm太阳辐射范围以收集光电流的可能性。详细研究了噻吩基核及其取代基对这些金属聚合物的光学和光伏行为的影响。还研究了太阳能电池参数(包括短路电流密度、开路电压、填充因子和PCE)的功率依赖性。目前的工作为具有宽太阳吸收的共轭材料提供了一条有吸引力的途径,并展示了金属聚炔在可见光和近红外光发电方面的潜力。

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