介孔材料
双金属片
材料科学
氨硼烷
无定形固体
催化作用
化学工程
合金
钴
脱氢
纳米技术
纳米材料
金属
化学
复合材料
冶金
有机化学
氢气储存
工程类
作者
Yunqing Kang,Bo Jiang,Juanjuan Yang,Zhe Wan,Jongbeom Na,Qian Li,Hexing Li,Joel Henzie,Yoshio Sakka,Yusuke Yamauchi,Toru Asahi
出处
期刊:ACS Nano
[American Chemical Society]
日期:2020-12-14
卷期号:14 (12): 17224-17232
被引量:58
标识
DOI:10.1021/acsnano.0c07178
摘要
Amorphous bimetallic borides are an emerging class of catalytic nanomaterial that has demonstrated excellent catalytic performance due to its glass-like structure, abundant unsaturated active sites, and synergistic electronic effects. However, the creation of mesoporous Earth-abundant bimetallic metal borides with tunable metal proportion remains a challenge. Herein, we develop a sophisticated and controllable dual-reducing agent strategy to synthesize the mesoporous nickel-cobalt boron (NiCoB) amorphous alloy spheres (AASs) with adjustable compositions by using a soft template-directed assembly approach. The selective use of tetrabutylphosphonium bromide (Bu4PBr) is beneficial to generate well-defined mesopores because it both moderates the reduction rate by decreasing the reducibility of M2+ species and prevents the generation of soap bubbles. Our meso-Ni10.0Co74.5B15.5 AASs generate the highest catalytic performance for the hydrolytic dehydrogenation of ammonia borane (AB). Its high performance is attributed to the combination of optimal synergistic effects between Ni, Co, and B as well as the high surface area and the good mass transport efficiency due to the open mesopores. This work describes a systematic approach for the design and synthesis of mesoporous bimetallic borides as efficient catalysts.
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