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A density functional theory study of hydrogen adsorption on Be-, Mg-, and Ca-exchanged LTL zeolite clusters

机译:氢吸收的密度泛函理论研究 - ,Mg-和Ca-交换LTL沸石簇

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摘要

Hydrogen molecule adsorption on frameworks consisting of alkaline earth metal atoms (Be, Mg, or Ca) in LTL zeolite was investigated via density functional theory. A 24T zeolite cluster model was used in this study. HOMO and LUMO energy, chemical potential, chemical hardness, electro-negativity, adsorption energy, and adsorption enthalpy values were calculated. The Mg-LTL and Ca-LTL clusters were found to have much lower chemical potentials and adsorption energies than those of the Be-LTL cluster. Additionally, the calculations indicated that the Mg-LTL and Ca-LTL clusters are softer (considering their lower chemical hardness values) and more chemically reactive than the Be-LTL cluster. The calculated hydrogen adsorption enthalpies were -14.7 and -9.4 kJ/mol for the Mg-LTL and Ca-LTL clusters, respectively, which are significantly larger than the enthalpy of liquefaction for the hydrogen molecule. These results imply that the Mg-LTL and Ca-LTL zeolite structures are promising cryoadsorbents for hydrogen storage.
机译:通过密度函数理论研究了LTL沸石中由碱土金属原子(如,Mg或Ca)组成的框架上的氢分子吸附。本研究使用了24t沸石簇模型。计算HOMO和LUMO能量,化学势,化学硬度,电消极,吸附能和吸附焓值。发现Mg-LT1和Ca-LT1簇具有比BE-LTL簇的更低的化学电位和吸附能量。另外,计算表明Mg-LT1和Ca-LT1簇更柔软(考虑其较低的化学硬度值)和比BE-LT1簇更具化学反应性。用于Mg-LT1和Ca-LT1簇的计算氢吸附焓分别为-14.7和-9.4kJ / mol,其显着大于氢分子的液化焓。这些结果意味着Mg-LT1和Ca-LTL沸石结构是承诺储氢的低温吸水剂。

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