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Enhancement of p-Type Dye-Sensitized Solar Cell Performance by Supramolecular Assembly of Electron Donor and Acceptor

机译:电子供体和受体的超分子组装增强了p型染料敏化太阳能电池的性能

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摘要

Supramolecular interactions based on porphyrin and fullerene derivatives were successfully adopted to improve the photovoltaic performance of p-type dye-sensitized solar cells (DSCs). Photoelectron spectroscopy (PES) measurements suggest a change in binding configuration of ZnTCPP after co-sensitization with C60PPy, which could be ascribed to supramolecular interaction between ZnTCPP and C60PPy. The performance of the ZnTCPP/C60PPy-based p-type DSC has been increased by a factor of 4 in comparison with the DSC with the ZnTCPP alone. At 560 nm, the IPCE value of DSCs based on ZnTCPP/C60PPy was a factor of 10 greater than that generated by ZnTCPP-based DSCs. The influence of different electrolytes on charge extraction and electron lifetime was investigated and showed that the enhanced Voc from the Co2+/3+(dtbp)3-based device is due to the positive EF shift of NiO.
机译:成功地采用基于卟啉和富勒烯衍生物的超分子相互作用来改善p型染料敏化太阳能电池(DSC)的光伏性能。光电子能谱(PES)测量表明,与C60PPy共敏化后,ZnTCPP的结合构型发生了变化,这可能归因于ZnTCPP和C60PPy之间的超分子相互作用。与仅使用ZnTCPP的DSC相比,基于ZnTCPP / C60PPy的p型DSC的性能提高了4倍。在560nm处,基于ZnTCPP / C60PPy的DSC的IPCE值比基于ZnTCPP的DSC产生的IPCE值大10倍。研究了不同电解质对电荷提取和电子寿命的影响,结果表明,基于Co 2 + / 3 + (dtbp)3的器件产生的Voc的增加是由于NiO的正EF位移引起的。

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