氨硼烷
埃洛石
催化作用
材料科学
水解
氢气储存
化学工程
纳米颗粒
氨
硼烷
制氢
氨生产
氢
化学
无机化学
纳米技术
有机化学
复合材料
工程类
作者
Chengli Xiong,Xinwei Zhang,Yuanting Lei,Lili Zhang,Huishan Shang,Bing Zhang,Yafei Zhao
标识
DOI:10.1016/j.clay.2021.106293
摘要
Abstract Exploring low-cost and earth-abundant catalyst to efficiently release clean H2 from solid hydrogen storage materials is an appealing solution for exhausted fossil fuel and its associated environmental issue. Halloysite (Hal) nanotubes are regarded as promising alternative catalyst support for expensive synthetic support materials due to their low cost and abundant resource. Herein, we report a simple and controllable one-pot reaction followed by chemical reduction approach to manufacture Ni, Co, P hybrids on Hal as high-efficient and non-noble metal catalysts for hydrolysis of ammonia borane (AB). It is revealed that ultrafine Ni0.13Co0.87P nanoparticles with diameter of 1.4 nm are homogenously anchored on Hal surface with excellent stability. The synergy among Ni, Co and P in Ni0.13Co0.87P effectively enhances their interaction with AB, resulting in reduced activation energy (41.8 kJ mol−1) and consequently significant boost of hydrolytic catalytic activity (TOF 47.5 molH2 molcat−1 min−1). A proposed mechanism demonstrates water molecules involve in the hydrolysis reaction and the rate-determining step is the O H cleavage in H2O. This work affords a prospective idea for the exploiting of Hal as well as new point of view for the reasonable design of low-cost AB hydrolysis catalyst.
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