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首页> 外文期刊>ACS catalysis >Role of Metal-Support Interactions, Particle Size, and Metal-Metal Synergy in CuNi Nanocatalysts for H-2 Generation
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Role of Metal-Support Interactions, Particle Size, and Metal-Metal Synergy in CuNi Nanocatalysts for H-2 Generation

机译:金属载体相互作用,粒度和金属-金属协同作用在H-2生成的CuNi纳米催化剂中的作用

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摘要

Efficient bimetallic nanocatalysts based on non-noble metals are highly desired for the development of new energy storage materials. In this work, we report a simple method for the synthesis of highly dispersed CuNi catalysts supported on mesoporous carbon or silica nanospheres using low-cost metal nitrate precursors. The mesoporous carbon-supported Cu0.5Ni0.5 nanocatalysts exhibit excellent catalytic performance for the hydrolysis of ammonia borane and decomposition of hydrous hydrazine with 100% hydrogen selectivity in aqueous alkaline solution at 60 degrees C. The chemical composition and size of the metal particles, which have a significant influence on the catalytic properties of the supported bimetallic CuNi materials, can readily be controlled by adjusting the metal loading and ratio of metal precursors. An exceedingly high turnover frequency of 3288 (mol(H2), mol(metal)(-1) h(-1)) and complete reaction within 1 mm in dehydrogenation of ammonia-borane were achieved over a tailored-made catalyst obtained through precise monitoring of metal particle size, composition, and support properties.
机译:基于非贵金属的高效双金属纳米催化剂被迫用于开发新的储能材料。在这项工作中,我们报告了一种使用低成本的金属硝酸盐前体合成负载在介孔碳或二氧化硅纳米球上的高分散CuNi催化剂的简单方法。介孔碳负载的Cu0.5Ni0.5纳米催化剂在60°C的碱性水溶液中具有100%的氢气选择性,对氨硼烷的水解和肼的分解具有优异的催化性能。金属颗粒的化学组成和尺寸对负载的双金属CuNi材料的催化性能有重大影响的金属,可以通过调节金属负载量和金属前体的比例来容易地控制。在经过精确定制的定制催化剂上,实现了极高的周转频率3288(mol(H2),mol(金属)(-1)h(-1))和1 mm范围内的氨硼烷脱氢反应完全监测金属的粒度,组成和载体性能。

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