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Towards high activity of hydrogen production from ammonia borane over efficient non-noble Ni_5P_4 catalyst

机译:在高效的非贵金属Ni_5P_4催化剂上实现由氨硼烷生产氢气的高活性

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摘要

Catalytic hydrolysis of ammonia borane has tremendous potential as an energy-efficient approach to supply hydrogen for energy vehicles and portable electronic devices. Herein, DFT calculation is first performed on electronic properties of Ni2P and Ni5P4 nanocatalysts. It is found that more electrons are transferred from Ni to P for Ni5P4, indicating that Ni5P4 may show superior performance based on the electron effect. Therefore, Ni2P and Ni5P4 with high purity are synthesized by the phase-controlled thermal decomposition approach. Gratifyingly, the Ni5P4 catalyst exhibits the as-expected better catalytic activity than that of Ni2P catalyst. It also shows low activation energy and good stability. Furthermore, the structures and morphologies of both catalysts are characterized by multi-techniques such as XRD, HRTEM and XPS. The better performance could be ascribed to the higher positive charge of Ni together with the stronger ensemble effect of P. The insights sheds new light on the design of efficient Ni-P catalysts for hydrogen generation. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氨硼烷的催化水解作为一种节能方法,可以为能源车辆和便携式电子设备提供氢气,具有巨大的潜力。在此,首先对Ni 2 P和Ni 5 P 4纳米催化剂的电子性质进行DFT计算。发现对于Ni5P4,更多的电子从Ni转移到P,这表明基于电子效应,Ni5P4可能显示出优异的性能。因此,通过相控热分解法合成了高纯度的Ni2P和Ni5P4。令人欣慰的是,Ni5P4催化剂显示出比Ni2P催化剂更好的催化活性。它还显示出较低的活化能和良好的稳定性。此外,两种催化剂的结构和形态都具有多种技术特征,例如XRD,HRTEM和XPS。更好的性能可以归因于Ni的更高的正电荷以及P的更强的集成效应。这一见识为高效的氢生成Ni-P催化剂的设计提供了新的思路。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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