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Stable, High-Efficiency Pyrrolidinium-Based Electrolyte for Solid-State Dye-Sensitized Solar Cells

机译:用于固态染料敏化太阳能电池的稳定,高效的吡咯烷鎓电解质

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摘要

We synthesized a series of pyrrolidinium based dicationic ionic crystals with high melting point and good thermal stability. Research on the crystal structure shows that there are ordered three-dimensional ionic channels in these crystals which is favorable for the ionic conductor to achieve high conductivity and diffusion coefficient. These ionic crystals are applied to electrolyte as matrix in dye sensitized solar cells, and the influence of crystal structure (including the alkylene chain separating two pyrrolidinium rings and anion) versus the device performances are studied by steady-state voltammography, current-voltage trace, and electrochemical impedance spectroscopy. As the solid state electrolyte, an optimized efficiency of 6.02% have achieved under full sunlight irradiation using ionic crystal [C6BEP][TFSI](2). And the device based on this solid electrolyte shows the excellent long-term stability, maintaining 92% of the initial efficiency after 960 h. This study elucidates fundamental the structure of dicationic crystal and provide useful clues for further improvement of solid-state electrolytes in DSSC.
机译:我们合成了一系列具有高熔点和良好热稳定性的基于吡咯烷鎓的双键离子晶体。对晶体结构的研究表明,在这些晶体中存在有序的三维离子通道,这有利于离子导体实现高电导率和扩散系数。这些离子晶体被用作染料敏化太阳能电池中的基质电解质,并通过稳态伏安法,电流-电压迹线研究了晶体结构(包括分隔两个吡咯烷鎓环和阴离子的亚烷基链)对器件性能的影响。和电化学阻抗谱。作为固态电解质,使用离子晶体[C6BEP] [TFSI](2)在完全阳光照射下可实现6.02%的优化效率。基于这种固体电解质的装置具有出色的长期稳定性,在960小时后仍保持92%的初始效率。这项研究阐明了两性晶体的基本结构,并为进一步改善DSSC中的固态电解质提供了有用的线索。

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