In Silico Generation of Chromium-Based MOFs with Abundant Active Sites for N2/CH4 Separation
收藏Figshare2024-04-25 更新2026-04-28 收录
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https://figshare.com/articles/dataset/In_Silico_Generation_of_Chromium-Based_MOFs_with_Abundant_Active_Sites_for_N_sub_2_sub_CH_sub_4_sub_Separation/25689186
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Selective nitrogen capture from natural gas using the adsorption properties of porous materials is promising due to its environmental benefits. However, N2 removal from N2/CH4 mixtures has been quite challenging because of their similar physical properties. Targeting the Cr-trimer-based cluster with an open metal site, known for selective nitrogen capture through the π-back-bonding mechanism, we screened nearly one hundred thousand chromium trimer-based metal–organic frameworks (MOFs), both experimentally synthesized and computationally constructed. Using criteria such as Cr-density, polymorphism, resistance to activation, and separation performance, we identified a promising in silico MOF. This hypothetical MOF showed a simulated nitrogen uptake of 2.13 mmol/g and a selectivity of 10.2 at 1 bar, surpassing the performance of the previously known best-performing MOF, Cr-MIL-100.
创建时间:
2024-04-25



