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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Effect of the LHCII pigment-protein complex aggregation on photovoltaic properties of sensitized TiO2 solar cells
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Effect of the LHCII pigment-protein complex aggregation on photovoltaic properties of sensitized TiO2 solar cells

机译:LHCII颜料蛋白复合聚集对敏化TiO2太阳能电池光伏性能的影响

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A modified dye-sensitized solar cell consisting of a thin TiO2 barrier layer sensitized with natural trimeric light-harvesting complex II (LHCII) from spinach was used as a biomimetic model to study the effects of LHCII aggregation on the photovoltaic properties. The aggregation of individual trimers induced molecular reorganization, which dramatically increased the photocurrent. The morphology of small- and large-size LHCII aggregates deposited on a surface was confirmed by atomic force microscopy. Enhanced LHCII immobilization was accomplished via electrostatic interaction with amine-functionalized photoanodes. The photocurrent responses of the assembled solar cells under illumination at three characteristic wavelength bands in the UV-Vis absorption spectra of LHCII solutions confirmed that a significant photocurrent was generated by LHCII photosensitizers. The enhanced photocurrent by large aggregated LHCII is shown to correlate with the quenching in the far-red fluorescence deriving from chlorophyll-chlorophyll charge transfer states that are effectively coupled with the TiO2 surface and thus inject electrons into the TiO2 conduction band. The large aggregated LHCII with more chlorophyll-chlorophyll charge transfer states is a much better sensitizer since it injects electrons more efficiently into the conduction band of TiO2 than the small aggregated LHCII mostly consisting of unquenched chlorophyll excited state. The assembled solar cells demonstrated remarkable stability in both aqueous buffer and acetonitrile electrolytes over 30 days.
机译:由来自菠菜的天然三聚体光学络合物II(LHCII)敏化的薄TiO2阻挡层组成的改性染料敏化太阳能电池用作生物仿真模型,以研究LHCII聚集对光伏性能的影响。个体三聚物诱导分子重组的聚集,从而显着增加了光电流。通过原子力显微镜确认沉积在表面上的小型和大型LHCII骨料的形态。通过与胺官能化光化的静电相互作用完成增强的LHCII固定。 LHCII溶液UV-Vis吸收光谱中的三个特征波长带在LHCII溶液的三个特征波长带下的光电流响应证实,LHCII光敏剂产生了显着的光电流。由大的聚集LHCII增强的光电流被示出关联与在远红色荧光从被有效地耦合与二氧化钛表面,从而将电子注入到二氧化钛的导带叶绿素叶绿素电荷转移状态导出猝灭。具有更多叶绿素 - 叶绿素电荷转移状态的大聚集LHCII是一种更好的敏化剂,因为它比大多组成的叶绿素激发态的小聚集LHCII更有效地喷射到TiO 2的导电带中的电子。组装的太阳能电池在30天内显示出含水缓冲液和乙腈电解质的显着稳定性。

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