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- W2612679734 abstract "Low-temperature fuel cells based on the direct alcohol fuel cells (DAFCs) technology attained a considerable interest as one of the promising electrochemical conversion devices in portable electronic devices and various stationary power systems with high efficiency, low operating temperature, and low pollutant emissions. The challenges inDAFCs arise from the need for inexpensive, active, and durable electrocatalyts. In this regard, nanostructured electrocatalysts hold the key to fundamental advances in energy conversion of fuel cells and essentially determining cost-effectiveness, performance, and durability. Nobel metal/alloy nanostructures such as nanoclusters, nanowires, and nanotubes are extensively used. In particular, alternative to platinum-based catalysts such as palladium and other transition metal-based nanostructures are known as efficient, low-cost electrocatalysts forDAFCs applications. The chapter describes recent progresses in the development of nanostructured catalysts; the advantages and disadvantages of the nanoscale materials for energy conversion are highlighted. This chapter includes a deeper understanding of the size- and shape-tunable nanostructures on catalytic activity and a detailed discussion of their effectiveness and perspectives during energy conversion inDAFCs. In addition, the development of practical electrocatalysts useful for electrode reactions in low-temperature fuel cells, effect of catalysts support, and relationships between structural morphology with the catalytic activity will be discussed." @default.
- W2612679734 created "2017-05-19" @default.
- W2612679734 creator A5025435171 @default.
- W2612679734 creator A5062797537 @default.
- W2612679734 creator A5072086850 @default.
- W2612679734 date "2017-05-12" @default.
- W2612679734 modified "2023-09-26" @default.
- W2612679734 title "Recent Advances in Nanostructured Electrocatalysts for Low‐temperature Direct Alcohol Fuel Cells" @default.
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