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Transition metal-metal oxide hybrids as versatile materials for hydrogen storage

机译:过渡金属 - 金属氧化物杂交物作为储氢的多功能材料

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摘要

Metal atom located on metal oxide (MMO) is a promising material with various applications such as hydrogen storage. As one of the metal oxides, niobium oxide (NbO) presents fascinating properties that make it a possibly applicable in MMOs. Here, we investigated the feasibility of transition metal-NbO hybrids as MMO materials for application in the hydrogen storage technology. In this respect, the hydrogen adsorption of transition metals (Fe, Ni, Cu, Pd, Ag, and Pt) decorated on the NbO nanocluster has been explored using density functional theory calculations. We found that the adsorption energy of the H-2 molecule on the NbO adsorbent is remarkably increased by locating the transition metals on the NbO metal oxide. Our results reveal that the transition metals decorated on the NbO nanocluster can act as active sites for hydrogen adsorption. Among the studied transition metals, Pt shows the highest hydrogen capacity up to 6.52 wt%.
机译:位于金属氧化物(MMO)上的金属原子是一种有希望的材料,具有各种应用,如储氢。 作为金属氧化物之一,氧化铌(NBO)具有使其成为MMOS中可能适用的迷人性质。 在这里,我们研究了过渡金属-NBO杂种作为MMO材料在储氢技术中应用的可行性。 在这方面,使用密度泛函理论计算探讨了在NBO纳米光幕上装饰的过渡金属(Fe,Ni,Cu,Cu,Pd,Ag和Pt)的氢吸附。 我们发现,通过在NBO金属氧化物上定位过渡金属,NBO吸附剂上的H-2分子的吸附能量显着增加。 我们的研究结果表明,在NBO纳米簇上装饰的过渡金属可以作为氢吸附的活性位点。 在研究的过渡金属中,PT显示最高氢容量,高达6.52wt%。

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