首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Molecularly Engineered Ru(II) Sensitizers Compatible with Cobalt(II/III) Redox Mediators for Dye-Sensitized Solar Cells
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Molecularly Engineered Ru(II) Sensitizers Compatible with Cobalt(II/III) Redox Mediators for Dye-Sensitized Solar Cells

机译:与染料敏化太阳能电池兼容的分子工程化Ru(II)增敏剂与钴(II / III)氧化还原介体兼容

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摘要

Thiocyanate-free isoquinazolylpyrazolate Ru-(II) complexes were synthesized and applied as sensitizers in dye-sensitized solar cells (DSCs). Unlike most other successful Ru sensitizers, Co-based electrolytes were used, and resulting record efficiency of 9.53% was obtained under simulated sunlight with an intensity of 100 mW cm(-2). Specifically, dye 51-57dht.1 and an electrolyte-based on Co(phen)(3) led to measurement of a J(SC) of 13.89 mA cm(-2), V-OC of 900 mV, and FF of 0.762 to yield 9.53% efficiency. The improved device performances were achieved by the inclusion of 2-hexylth-iophene units onto the isoquinoline subunits, in addition to lengthening the perfluoroalkyl chain on the pyrazolate chelating group, which worked to increase light absorption and decrease recombination effects when using the Co-based electrolyte. As this study shows, Ru(II) sensitizers bearing sterically demanding ligands can allow successful utilization of important Co electrolytes and high performance.
机译:合成了无硫氰酸盐的异喹唑基吡唑啉化物Ru-(II)配合物,并将其用作染料敏化太阳能电池(DSC)中的敏化剂。与大多数其他成功的Ru增感剂不同,使用了Co基电解质,在模拟阳光下以100 mW cm(-2)的强度获得的记录效率为9.53%。具体而言,染料51-57dht.1和基于Co(phen)(3)的电解质导致J(SC)的测量值为13.89 mA cm(-2),V-OC为900 mV,FF为0.762产生9.53%的效率。器件性能的改善是通过在异喹啉亚基上包含2-己基噻吩单元来实现的,此外还延长了吡唑酸酯螯合基团上的全氟烷基链,当使用基于钴的基团时,该链段可增加光吸收并降低重组效果电解质。如本研究所示,带有空间要求的配体的Ru(II)敏化剂可以成功地利用重要的Co电解质和高性能。

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