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首页> 外文期刊>Nanoscale >Novel CoS2 embedded carbon nanocages by direct sulfurizing metal-organic frameworks for dye-sensitized solar cells
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Novel CoS2 embedded carbon nanocages by direct sulfurizing metal-organic frameworks for dye-sensitized solar cells

机译:小说CoS2嵌入式碳nanocages直接渗硫有机框架涂料的太阳能电池

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Owing to its excellent electrocatalytic properties, cobalt disulfide (CoS2) is regarded as a promising counter electrode (CE) material for dye-sensitized solar cells (DSSCs). However, hindered by its relatively poor electrical conductivity and chemical instability, it remains a challenge to apply it into high-performance DSSCs. In this work, we have developed novel CoS2 embedded carbon nanocages as a CE in DSSCs, using ZIF-67 (zeolitic imidazolate framework 67, Co(mim)(2), mim = 2-methylimidolate) as a template. The CoS2 samples sulfurized for different time lengths are prepared through a facile solution process. It is found that the sulfurization time can be optimized to maximize the DSSC efficiency and the DSSC based on the CoS2 embedded carbon nanocages sulfurized for 4 hours exhibits the highest photovoltaic conversion efficiency (PCE) of 8.20%, higher than those of DSSCs consisting of other CoS2 CEs and Pt-based DSSC (7.88%). The significantly improved DSSC PCE is contributed by the synergic effect of inner CoS2 nanoparticles and an amorphous carbon matrix, leading to a CE with high catalytic activity, good electrical conductivity and excellent durability. This study demonstrates that the CE based on inexpensive CoS2 embedded carbon nanocages is a prospective substitute to expensive platinum and provides a new approach for commercializing high-efficiency DSSCs.
机译:由于其出色的electrocatalytic属性,二硫化钴(CoS2)被认为作为一个有前途的反电极(CE)的材料色素增感太阳能电池的(DSSCs)。阻碍了它相对贫穷的电电导率和化学不稳定性,它仍然存在把它应用到高性能的挑战DSSCs。嵌入式碳nanocages作为DSSCs CE,使用67年zif - 67(沸石的imidazolate框架,有限公司(我)(2)= 2 -methylimidolate)的模板。准备通过一个不同的时间长度简单的解决方案的过程。硫化时间可以优化最大化DSSC效率和DSSC的基础上CoS2嵌入碳4 nanocages硫化小时展品光伏最高转换效率(PCE)的8.20%,高于那些DSSCs其他CoS2 CEs和组成Pt-based DSSC(7.88%)。DSSC PCE是协同效应的贡献内部CoS2纳米颗粒和无定形碳矩阵,与高催化导致CE活动,良好的导电性和优良的耐久性。基于廉价CoS2嵌入式,CE碳nanocages是一个潜在的替代品昂贵的铂和提供了一种新方法高效DSSCs商业化。

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