five

Computational Investigation of Correlations in Adsorbate Entropy for Pure-Silica Zeolite Adsorbents

收藏
Figshare2020-06-30 更新2026-04-28 收录
下载链接:
https://figshare.com/articles/dataset/Computational_Investigation_of_Correlations_in_Adsorbate_Entropy_for_Pure-Silica_Zeolite_Adsorbents/12671011
下载链接
链接失效反馈
官方服务:
资源简介:
Vast numbers of unstudied hypothetical porous frameworks continue to spark interest in optimizing adsorption and catalytic processes. Evaluating the use of such materials depends on the accessibility of thermodynamic metrics such as the free energy, which, in turn, depend on the satisfactory estimation or calculation of the adsorption entropy, which often remains elusive. Previous works using simulations and experimental data have demonstrated relationships between the entropy and system descriptors, allowing for sensible predictions based on more-easily obtained physical parameters. However, the resultant conclusions were either based on experimental data for industrially relevant alkanes or lacked a significant sample size. In this paper, we evaluate correlations between gas-phase and adsorbed-phase entropies for a larger and more chemically diverse set of adsorbate molecules by using force fields and statistical mechanical expressions to calculate those entropies. In total, we perform calculations for 37 molecules across 10 chemical categories available in the TraPPE force field set, as adsorbed in five siliceous zeolites. Our results show that linear correlations between the gas- and adsorbed-phase entropies persist for the larger and diverse set of adsorbate molecules studied here, proving a broader applicability and justifying the use of simple correlations for many adsorbates and, presumably, adsorbent materials.
创建时间:
2020-06-30
二维码
社区交流群
二维码
科研交流群
商业服务