High Capacity Hydrogen Storage in Ni Decorated Carbon Nanocone: A First-Principles Study

S. Aal, A. Shalabi, K. Soliman
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引用次数: 7

Abstract

Hydrogen adsorption and storage on Ni-decorated CNC has been investigated by using DFT. A single Ni atom decorated CNC adsorbs up to six H2 with a binding energy of 0.316 eV/H2. The interaction of 3H2 with Ni-CNC is irreversible at 603 K. In contrast, the interaction of 4H2 with Ni-CNC is reversible at 456 K. Further characterizations of the two reactions are considered in terms of the projected densities of states, electrophilicity, and statistical thermodynamic stability. The free energy of the reaction between 4H2 and Ni-CNC, surface coverage and rate constants ratio meet the ultimate targets of DOE at 11.843 atm, 0.925 and 1.041 respectively. The Ni-CNC complexes can serve as high-capacity hydrogen storage materials with capacities of up to 11.323 wt.%. It is illustrated that unless the access of oxygen to the surface is restricted, its strong bond to the decorated systems will preclude any practical use for hydrogen storage.
Ni修饰碳纳米锥高容量储氢的第一性原理研究
采用离散傅里叶变换(DFT)研究了ni装饰CNC表面的氢吸附和储氢性能。单个Ni原子修饰的CNC可吸附多达6个H2,结合能为0.316 eV/H2。在603k时,3H2与Ni-CNC的相互作用是不可逆的。而4H2与Ni-CNC的相互作用在456k时是可逆的。这两种反应的进一步表征是根据状态的投射密度、亲电性和统计热力学稳定性来考虑的。4H2与Ni-CNC反应的自由能、表面覆盖率和速率常数比值分别为11.843 atm、0.925和1.041,满足DOE的最终目标。Ni-CNC配合物可以作为容量高达11.323 wt.%的高容量储氢材料。这表明,除非氧气进入表面受到限制,否则它与装饰系统的强结合将排除氢储存的任何实际用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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