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Mesoporous Carbon Counter Electrode For Dye-Sensitized Solar Cells

机译:用于染料敏化太阳能电池的中孔碳对电极

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@@1.Introduction Dye-sensitized solar cells (DSCs) have attracted much attention and have been considered as a credible alternative to other thin-film photovotaic cells because of their high-energy conversion efficiency and low production costs. However, further cost reduction is warranted in addition to the need for further increasing the efficiency. In recent years, several strategies for lowing the cost of DSCs have been made. The application of conductive plastic substrate to DSCs reduce the cost through mass production by employing role-to-role manufacturing system. Organic dye may afford a cut in sensitizer cost. Carbonaceous materials such as activated carbon, graphite, and carbon nanotubes have been employed as a low cost substitute for platinum to prepare the counter electrode. However, The conversion efficiency of DSCs with carbon counter electrode were still insufficient and should be increased for the practical usage. Mesoporous carbon (MC), due to their high surface area, high electrical conductivity, high stability, are utilized as catalysis and electrode materials for different purpose such as protection of environment and improvement of energy efficiency[8]. To take the advantage of the high surface area and high electrical conductivity of MC, a novel counter electrode based MC for DSCs was prepared. The performance of DSCs with MC electrode was investigated.
机译:@@ 1.Introduction染料敏化太阳能电池(DSCs)吸引了很多关注,并且由于其高能量转换效率和低生产成本,被认为是对其他薄膜光伏电池的可靠替代品。但是,除了需要进一步提高效率之外,还需要进一步降低成本。近年来,已经进行了几项降低DSC成本的策略。导电塑料基板在DSC中的应用通过采用角色到角色制造系统来降低批量生产的成本。有机染料可能提供敏感剂的成本。已采用碳质材料,例如活性炭,石墨和碳纳米管,作为铂的低成本替代品以制备对电极。然而,具有碳对电极的DSC的转化效率仍然不足,并且应该增加实际使用。介孔碳(MC),由于它们的高表面积,高导电性,高稳定性,用于不同目的的催化和电极材料,例如保护环境和能效的提高[8]。为了采取高表面积和MC的高电导率的优点,制备了一种用于DSC的新型对电极的MC。研究了DSCS与MC电极的性能。

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