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First-principles study of hydrogen adsorption in metal-doped COF-10

机译:金属掺杂COF-10中氢吸附的第一性原理研究

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Covalent organic frameworks (COFs), due to their low-density, high-porosity, and high-stability, have promising applications in gas storage. In this study we have explored the potential of COFs doped with Li and Ca metal atoms for storing hydrogen under ambient thermodynamic conditions. Using density functional theory we have performed detailed calculations of the sites Li and Ca atoms occupy in COF-10 and their interaction with hydrogen molecules. The binding energy of Li atom on COF-10 substrate is found to be about 1.0 eV and each Li atom can adsorb up to three H_2 molecules. However, at high concentration, Li atoms cluster and, consequently, their hydrogen storage capacity is reduced due to steric hindrance between H_2 molecules. On the other hand, due to charge transfer from Li to the substrate, O sites provide additional enhancement for hydrogen adsorption. With increasing concentration of doped metal atoms, the COF-10 substrate provides an additional platform for storing hydrogen. Similar conclusions are reached for Ca doped COF-10.
机译:共价有机骨架(COF)由于其低密度,高孔隙率和高稳定性而在储气中具有广阔的应用前景。在这项研究中,我们探索了掺杂Li和Ca金属原子的COF在环境热力学条件下储存氢的潜力。使用密度泛函理论,我们对Li和Ca原子在COF-10中占据的位点以及它们与氢分子的相互作用进行了详细的计算。发现Li原子在COF-10基底上的结合能约为1.0 eV,每个Li原子最多可吸附三个H_2分子。然而,在高浓度下,Li原子成簇,因此,由于H_2分子之间的空间位阻,其氢存储能力降低。另一方面,由于电荷从Li转移到基材上,O位为氢的吸附提供了额外的增强。随着掺杂金属原子浓度的增加,COF-10衬底提供了一个额外的氢存储平台。对于钙掺杂的COF-10,得出类似的结论。

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