脱氢
催化作用
甲酸
双金属片
化学
无机化学
氢
氢气储存
制氢
选择性
纳米颗粒
化学工程
浸出(土壤学)
材料科学
有机化学
纳米技术
土壤水分
土壤科学
工程类
环境科学
作者
Ahmet Bulut,Mehmet Yurderi,Yaşar Karataş,Zafer Say,Hilal Kıvrak,Murat Kaya,Mehmet Gülcan,Emrah Özensoy,Mehmet Zahmakıran
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2015-09-09
卷期号:5 (10): 6099-6110
被引量:134
标识
DOI:10.1021/acscatal.5b01121
摘要
Formic acid (HCOOH) has a great potential as a safe and a convenient hydrogen carrier for fuel cell applications. However, efficient and CO-free hydrogen production through the decomposition of formic acid at low temperatures (<363 K) in the absence of additives constitutes a major challenge. Herein, we present a new heterogeneous catalyst system composed of bimetallic PdAg alloy and MnOx nanoparticles supported on amine-grafted silica facilitating the liberation of hydrogen at room temperature through the dehydrogenation of formic acid in the absence of any additives with remarkable activity (330 mol H2·mol catalyst-1·h-1) and selectivity (>99%) at complete conversion (>99%). Moreover this new catalytic system enables facile catalyst recovery and very high stability against agglomeration, leaching, and CO poisoning. Through a comprehensive set of structural and functional characterization experiments, mechanistic origins of the unusually high catalytic activity, selectivity, and stability of this unique catalytic system are elucidated. Current heterogeneous catalytic architecture presents itself as an excellent contender for clean hydrogen production via room-temperature additive-free dehydrogenation of formic acid for on-board hydrogen fuel cell applications.
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