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- W2890430823 endingPage "69" @default.
- W2890430823 startingPage "47" @default.
- W2890430823 abstract "Counter electrode (CE) is a crucial component in dye-sensitized solar cells (DSSCs) having mesoscopic structure. It collects electrons from external circuit and catalyzes reduction reactions of oxidized electrolyte species, which has significant impacts on photovoltaic performances, long-term stability, and solar cell cost. Platinum is the preferred CE catalyst in state-of-the-art DSSCs; however, the high cost of platinum electrodes has been an economic burden for their commercialization. A promising solution is to develop cost-effective alternative CE catalysts to reduce platinum application or to replace platinum without sacrificing electrocatalytic and charge transfer abilities. Recently, CEs from alloy catalysts have drawn growing interests for high-efficiency DSSC platforms, arising from excellent conductivity, good electrocatalysis, high dissolution–resistance, cost-effectiveness, and scalable materials. In this chapter, we will summarize the recent progresses and outline the advances in metal and alloy CE catalysts. The fundamental principles in enhancing catalytic activity and long-term stability are carefully proposed to guide the design and scalability of alloy CEs. In this chapter, we will also review the prospects and challenges of alloy CEs in high-efficiency DSSCs, which is of great significance for enhancing the development of DSSCs and other photovoltaics" @default.
- W2890430823 created "2018-09-27" @default.
- W2890430823 creator A5043623068 @default.
- W2890430823 creator A5075581076 @default.
- W2890430823 date "2018-09-03" @default.
- W2890430823 modified "2023-09-26" @default.
- W2890430823 title "Metal and Alloy for CE Catalysts in Dye-Sensitized Solar Cells" @default.
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