脱氢
催化作用
甲酸
材料科学
吸附
合理设计
格式化
氢
氢气储存
化学工程
无机化学
纳米技术
有机化学
化学
工程类
作者
Sijia Li,Yitong Zhou,Kang Xia,Dongxue Liu,Lin Gu,Qinghua Zhang,Jun‐Min Yan,Qing Jiang
标识
DOI:10.1002/adma.201806781
摘要
Efficient and selective dehydrogenation of formic acid is a key challenge for a fuel-cell-based hydrogen economy. Though the development of heterogeneous catalysts has received much progress, their catalytic activity remains insufficient. Moreover, the design principle of such catalysts are still unclear. Here, experimental and theoretical studies on a series of mono-/bi-metallic nanoparticles supported on a NH2 -N-rGO substrate are combined for formic acid dehydrogenation where the surface energy of a metal is taken as a relevant indicator for the adsorption ability of the catalyst for guiding catalyst design. The AuPd/NH2 -N-rGO catalyst shows record catalytic activity by reducing the energy barrier of rate controlling steps of formate adsorption and hydrogen desorption. The obtained excellent results both in experiments and simulations could be extended to other important systems, providing a general guideline to design more efficient catalysts.
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