化学
氢气储存
共价键
氢
巴(单位)
吸附
蒙特卡罗方法
共价有机骨架
氢分子
分子
物理化学
有机化学
物理
数学
统计
气象学
作者
Sang Soo Han,Hiroyasu Furukawa,Omar M. Yaghi,William A. Goddard
摘要
We report the H2 uptake properties of six covalent organic frameworks (COFs) from first-principles-based grand canonical Monte-Carlo simulations. The predicted H2 adsorption isotherm is in excellent agreement with the only available experimental result (3.3 vs 3.4 wt % at 50 bar and 77 K for COF-5), also reported here, validating the predictions. We predict that COF-105 and COF-108 lead to a reversible excess H2 uptake of 10.0 wt % at 77 K, making them the best known storage materials for molecular hydrogen at 77 K. We predict that the total H2 uptake for COF-108 is 18.9 wt % at 77 K. COF-102 shows the best volumetric performance, storing 40.4 g/L of H2 at 77 K. These results indicate that the COF systems are most promising candidates for practical hydrogen storage.
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