首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Engineering Nickel/Palladium Heterojunctions for Dehydrogenation of Ammonia Borane: Improving the Catalytic Performance with 3D Mesoporous Structures and External Nitrogen-Doped Carbon Layers
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Engineering Nickel/Palladium Heterojunctions for Dehydrogenation of Ammonia Borane: Improving the Catalytic Performance with 3D Mesoporous Structures and External Nitrogen-Doped Carbon Layers

机译:氨基硼烷脱氢的工程镍/钯异质结:提高3D中孔结构和外氮掺杂碳层的催化性能

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摘要

Catalysts based on metallic NPs have shown high activities in heterogeneous catalysis, due to their high fractions of surface-active atoms, which, however, will lead to the sacrifices in stability and recycle of catalysts. In order to balance well the relationship between activity, stability, and recovery, in this paper, we have constructed a 3D mesoporous sphere structure assembled by N-doped carbon coated Ni/Pd NP heterojunctions (Ni/Pd@N-C). This obtained Ni/Pd@N-C has shown high catalytic activity, durability and recyclability for the hydrolytic dehydrogenation of ammonia borane (AB). Further investigations, including experimental and theoretical results, have shown that the unique structural features, the synergistic effect between Ni and Pd, and the coating of N-doped carbon layer are responsible for the good catalytic performance of Ni/Pd@N-C mesoporous spheres.
机译:基于金属NPS的催化剂在异质催化中显示出高活性,由于它们的表面活性原子的高级分,然而,这将导致稳定性和催化剂再循环中的牺牲。 为了平衡活动,稳定性和恢复之间的关系,在本文中,我们构造了由N掺杂碳涂覆的Ni / Pd NP杂疾病(Ni / Pd @ N-C)组装的3D中孔球结构。 该获得的Ni / Pd @ N-C显示了氨硼烷(AB)的水解脱氢的高催化活性,耐久性和可再循环性。 进一步的研究(包括实验和理论结果)表明,独特的结构特征,Ni和Pd之间的协同效应,以及N掺杂的碳层的涂层负责Ni / Pd的良好催化性能的N-C中孔球。

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