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Graphitic-Shell Encapsulation of Metal Electrocatalysts for Oxygen Evolution, Oxygen Reduction, and Hydrogen Evolution in Alkaline Solution

机译:金属电解质的石墨壳封装,用于碱性溶液中的氧释放,氧还原和氢释放

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摘要

Developing highly efficient, cost effective, and environmentally friendly electrocatalysts for the oxygen evolution reaction (OER), oxygen reduction reaction (ORR), and hydrogen evolution reaction (HER) is of interest for sustainable and clean energy technologies, including metal-air batteries and fuel cells. In this work, the screening of electrocatalytic activities of a series of single metallic iron, cobalt, and nickel nanoparticles and their binary and ternary alloys encapsulated in a graphitic carbon shell toward the OER, ORR, and HER in alkaline media is reported. Synthesis of these compounds proceeds by a two-step sol-gel and carbothermal reduction procedure. Various ex situ characterizations show that with harsh electrochemical activation, the graphitic shell undergoes an electrochemical exfoliation. The modified electronic properties of the remaining graphene layers prevent their exfoliation, protect the bulk of the metallic cores, and participate in the electrocatalysis. The amount of near-surface, higher-oxidation-state metals in the as-prepared samples increases with electrochemical cycling, indicating that some metallic nanoparticles are not adequately encased within the graphite shell. Such surface oxide species provide secondary active sites for the electrocatalytic activities. The Ni-Fe binary system gives the most promising results for the OER, and the Co-Fe binary system shows the most promise for the ORR and HER.
机译:开发用于氧气析出反应(OER),氧气还原反应(ORR)和氢气析出反应(HER)的高效,环保的电催化剂,对于可持续和清洁能源技术(包括金属空气电池和燃料电池。在这项工作中,报道了在碱性介质中,一系列单一金属铁,钴和镍纳米粒子及其包裹在石墨碳壳中的二元和三元合金对OER,ORR和HER的电催化活性的筛选。这些化合物的合成通过两步溶胶-凝胶法和碳热还原法进行。各种异位表征表明,在苛刻的电化学活化下,石墨壳经历了电化学剥落。其余石墨烯层的改性电子性能可防止其剥落,保护大部分金属核并参与电催化。所制备样品中近表面高氧化态金属的数量随电化学循环的增加而增加,这表明一些金属纳米颗粒没有充分地包裹在石墨壳内。这样的表面氧化物物质为电催化活性提供了第二活性位。 Ni-Fe二元系统为OER提供了最有希望的结果,而Co-Fe二元系统为ORR和HER提供了最有希望的结果。

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