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Enhancement in hydrogen molecule adsorption on B12N12 nano-cluster by decoration of nickel

机译:镍装饰增强B12N12纳米簇上氢分子的吸附

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We present here results from detailed investigation on the adsorption property of H-2 on the surface of B12N12 (BN) and Ni-decorated B12N12 (Ni-BN) nano-clusters through density functional theory (DFT) methods. First, the adsorption of Ni on BN nano-cage resulted in optimization of two distinct geometries (P1 and P2) differing in orientation of nickel on the surface of the nano-cage. The binding properties have been calculated and analyzed theoretically for both geometries of Ni-BN (P1 and P2) in terms of binding energies, band structures, total density of states, and natural bond orbital (NBO) charges. The nickel binds more strongly to BN nano-cage in P1 compared to P2, as revealed from energetic and electronic properties. Hydrogen adsorption has also been studied on Ni-BN (both P1 and P2), and compared with that of bare BN nano-cage. H-2 adsorption capacity for nickel decorated BN nano-cage (Ni-BN) is considerably enhanced while there is very low adsorption capacity for pristine BN. Although, decoration of Ni in P1 geometry releases slightly higher energy (-414 kJ/mol versus-399 kJ/mol for P2), the latter is better adsorbent for H-2 molecule. H-2 adsorption on Ni-BN in P2 geometry is more exothermic (-144 kJ/mol versus-108 kJ/mol for position P1). The band gap of Ni-BN nano-cages increases upon interaction with hydrogen, and the effect is more pronounced for P2 geometry compared to P1. Incorporation of Ni enhances the H-2 adsorption capacity of BN cluster, significantly. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:我们通过密度泛函理论(DFT)方法对H-2在B12N12(BN)和镍修饰的B12N12(Ni-BN)纳米团簇表面上的吸附性能进行了详细研究,得出的结果是。首先,镍在BN纳米笼中的吸附导致优化了两个不同的几何形状(P1和P2),这些几何形状在纳米笼表面上的镍取向不同。已经从结合能,能带结构,状态总密度和自然键轨道(NBO)电荷的角度对Ni-BN的两种几何形状(P1和P2)进行了理论计算和分析。从能量和电子性质可以看出,与P2相比,P1中的镍与BN纳米笼更牢固地结合。还研究了Ni-BN(P1和P2)上的氢吸附,并与裸BN纳米笼中的氢吸附进行了比较。镍装饰的BN纳米笼(Ni-BN)的H-2吸附能力大大提高,而原始BN的吸附能力非常低。尽管以P1几何形状装饰Ni会释放出更高的能量(-P2为-414 kJ / mol,P2为-399 kJ / mol),后者对H-2分子具有更好的吸附性。在P2几何形状中,H-2在Ni-BN上的吸附更为放热(-P1位置为-144 kJ / mol,-108 kJ / mol)。 Ni-BN纳米笼的带隙在与氢相互作用时增加,与P1相比,P2几何形状的影响更为明显。镍的引入显着增强了BN团簇的H-2吸附能力。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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