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High-surface-area nanomesh graphene with enriched edge sites as efficient metal-free cathodes for dye-sensitized solar cells

机译:High-surface-area nanomesh石墨烯与充实边缘网站效率不含金属的阴极涂料的太阳能电池

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摘要

Exploiting cost-effective and highly efficient counter electrodes (CEs) has been a persistent objective for practical application of dye-sensitized solar cells (DSSCs). Here, we present an efficient CE by using pure three-dimensional (3D) nanomesh graphene frameworks (NGFs) which are synthesized via a template-directed chemical vapor deposition (CVD) approach. The high-surface-area 3D NGFs associated with the enriched surface edge defects make it very efficient towards I-3(-) reduction even without any Pt catalyst. More interestingly, by virtue of the interpenetrating graphene frameworks, the NGFs exhibit excellent electron conductivity, thus leading to facile charge transfer. Consequently, the DSSCs with pure NGFs as CEs display a power conversion efficiency of 7.32%, which is comparable to that of Pt as CEs (7.28%), thereby exhibiting great potential as low-cost and highly efficient CE materials for large-scale deployment of DSSCs.
机译:利用有效的和高效的反电极(CEs)一直是持续的客观的实际应用涂料太阳能电池(DSSCs)。存在一个有效利用纯CE三维(3 d) nanomesh石墨烯通过一个框架(神经生长因子)的合成template-directed化学汽相淀积(CVD)的方法。与丰富表面边缘缺陷有关让它对我非常有效的减少(-)即使没有任何Pt催化剂。由于穿插的石墨烯框架,神经生长因子表现出优秀的电子电导率,从而导致的费用转移。在CEs上显示的功率转换效率7.32%,这与Pt的CEs上(7.28%),从而表现出巨大的潜力低成本、高效CE材料DSSCs大规模部署。

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