化学
催化作用
纳米材料基催化剂
水解
氨生产
纳米复合材料
制氢
氨
纳米颗粒
金属
氢气储存
氨硼烷
化学工程
氢
无机化学
过渡金属
磁性纳米粒子
协同催化
核化学
过氧化氢
纳米技术
碳纤维
微球
作者
Pengfei Li,X M Liu,X M Liu,Huanyu Yu,M Wang,Jiang Zhao,Yanlan Wang,Yi Xiong,X M Liu,X M Liu
标识
DOI:10.1021/acs.inorgchem.6c02498
摘要
H 2 production from chemical hydrogen storage materials, such as ammonia borane, has attracted widespread attention as an innovative and promising alternative to traditional hydrogen storage approaches, offering notable advantages including high storage density and enhanced safety. Herein, a series of non-noble metal nanocomposites as high-powered nanocatalysts were fabricated via fixation of transition metal nanoparticles (Fe, Co, Ni, and Cu) onto Ni-enriched carbon microspheres (Ni-CMSs) for selective H 2 production upon NH 3 BH 3 hydrolysis. The optimal Cu/Ni-CMS nanocomposite exhibited the highest catalytic efficiency in H 2 production upon NH 3 BH 3 hydrolysis, with a remarkable rate of 1449.74 mL(H 2 ). g cat –1 min –1 at 30 °C. Various physical characterizations confirmed that Cu nanoparticles were successfully immobilized onto Ni-CMS; The as-prepared Cu/Ni-CMS was composed of homogeneously distributed Cu, Ni, C, N, and O elements throughout the hollow structure of Ni-CMS. Attractively, the magnetic Cu/Ni-CMS can be rapidly separated and reused over 10 catalytic cycles using an external magnet during NH 3 BH 3 hydrolysis for H 2 production, with negligible activity loss. This work could provide a facile and simple route for the synthesis of non-noble metal catalysts for H 2 evolution.
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