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Surface and Particle-Size Effects on Hydrogen Desorption from Catalyst-Doped MgH2

机译:表面和粒度对掺杂催化剂的MgH2中氢脱附的影响

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摘要

With their high capacity, light-metal hydrides like MgH2 remain under scrutiny as reversible H-storage materials, especially to develop control of H-desorption properties by decreasing size (ball-milling) and/or adding catalysts. By employing density functional theory and simulated annealing, we study initial H2 desorption from semi-infinite stepped rutile (110) surface and Mg31H62 nanoclusters, with(out) transition-metal catalyst dopants (Ti or Fe). While Mg31H62structures are disordered (amorphous), the semi-infinite surfaces and nanoclusters have similar single, double, and triple H-to-metal bond configurations that yield similar H-desorption energies. Hence, there is no size effect on desorption energetics with reduction in sample size, but dopants do reduce the H-desorption energy. All desorption energies are endothermic, in contrast to a recent report.
机译:凭借其高容量,像MgH2这样的轻金属氢化物作为可逆H储存材料仍受到严格审查,尤其是通过减小尺寸(球磨)和/或添加催化剂来发展H脱附性能的控制。通过使用密度泛函理论和模拟退火,我们研究了半无限阶梯状金红石(110)表面和Mg31H62纳米团簇(含(不含)过渡金属催化剂)(Ti或Fe)的初始H2解吸。虽然Mg31H62的结构是无序的(非晶态),但半无限表面和纳米团簇具有相似的单,双和三重H-金属键构型,可产生相似的H-解吸能。因此,样品尺寸的减小对解吸能量没有大小影响,但是掺杂剂确实降低了H-解吸能。与最近的报道相反,所有的解吸能量都是吸热的。

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