首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >A viable surface passivation approach to improve efficiency in cobalt based dye sensitized solar cells
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A viable surface passivation approach to improve efficiency in cobalt based dye sensitized solar cells

机译:一种可行的表面钝化方法,可提高钴基染料敏化太阳能电池的效率

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摘要

A successful general strategy for improving the electron collection efficiency in Dye Sensitized Solar Cells based on common Ru(II) complexes like Z907 and kinetically fast redox mediators based on the [Co(bpy)_3]~(3+/2+) couples was investigated. The post-treatment of the dyed photoanode with commercially available tri-alkoxy silanes was effective in screening the TiO_2 surface by electron recapture involving Co(III), but, interestingly, silanes endowed with relatively short propyl chains like aminopropyl-triethoxysilane (APTS) and trimethylammoniumpropyl-trimethoxysilane (TMAS) bearing a cationic charge, proved to be more effective than longer and more sterically hindered C16 chains in suppressing the dark current. In the best cases (TMAS and APTS), the siloxane treatment resulted in overall improvements of the cell efficiency of the order of respectively 600% and 500% by comparison with the untreated photoanode based on the Z907 Ru(II) Dye. This approach may represent a viable procedure for improving the electron collection efficiency in cobalt mediated DSSCs even without the use of highly sterically hindered dyes specifically designed to work in conjunction with kinetically fast metal based mediators.
机译:成功的通用策略是提高染料敏化太阳能电池中基于常见Ru(II)配合物(如Z907)和动力学快速氧化还原介体(基于[Co(bpy)_3]〜(3 + / 2 +)对)的电子收集效率。调查。用市售的三烷氧基硅烷对染色的光阳极进行后处理可有效地通过涉及Co(III)的电子捕获来筛选TiO_2表面,但有趣的是,具有相对较短丙基链的硅烷,如氨基丙基-三乙氧基硅烷(APTS)和事实证明,带有阳离子电荷的三甲基铵丙基三甲氧基硅烷(TMAS)在抑制暗电流方面比更长且空间受阻的C16链更有效。在最佳情况下(TMAS和APTS),与未处理的基于Z907 Ru(II)染料的光阳极相比,硅氧烷处理可整体提高电池效率,分别达到600%和500%左右。即使不使用专门设计用于与动力学上快速的金属基介体结合使用的高度空间受阻的染料,这种方法也可能代表一种提高钴介导的DSSC中电子收集效率的可行方法。

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