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Computational Study of the Adsorption of Small Gas Molecules on Pillar5arenes

机译:小气体分子在柱5芳烃上吸附的计算研究

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摘要

The anthropogenic carbon dioxide (CO2) that is the main cause of the greenhouse effect has become subject to many studies of gas capture, storage, and separation. P[n]A-based supramolecular organic frameworks (SOF) have emerged as a promising candidate for capturing and separation of CO2. Experimental studies show high adsorption rates and selectivity for CO2 over other gases such as methane (CH4) and nitrogen (N2). [Advanced Materials 26, 7027 (2014)] However, a full understanding of CO2 adsorption in P[n]A is still missing. Using density functional theory (DFT) based calculations, we found that CO2 can be adsorbed by P[5]A in different positions. The most favorable adsorption position is within the cavity of P[5]A. The CO2 molecule adsorbs by forming hydrogen bonds or by π-π interaction with the benzene rings of P[5]A. Also CH4 and N2 can be physisorbed by P[5]A, but with lower binding energies, which can be explained by the weaker quadrupole moments and polarizabilities of CH4 and N2. Our investigations are the basis for targeted design and optimization of a potential application of P[5]A in CO2 capture, storage, and separation.
机译:的人为二氧化碳(CO2)温室效应的主要原因受到许多研究气体捕获、存储、和分离。(SOF)已成为一个有机框架有前途的候选人为捕捉和分离的二氧化碳。利率和二氧化碳的选择性比其他气体如甲烷(CH4)和氮(N2)。[7027年先进材料26日(2014年)]然而,a全面了解二氧化碳吸附在P [n]失踪。(基于DFT)计算,我们发现二氧化碳由P[5]在不同吸附位置。最优惠的吸附位置内腔P[5]。形成氢键或π-π相互作用苯环上的P[5]。被physisorbed P[5],但较低的绑定能量,可以解释为弱四极矩和CH4的极化率和N2。有针对性的设计和优化的潜力应用P[5]在二氧化碳捕获、存储和分离。

著录项

  • 来源
    《Chemistry Select》 |2023年第12期|共7页
  • 作者

    Quoc Duy Ho; Eva Rauls;

  • 作者单位

    Department of mathematics and physics, Universitetet i Stavanger, Stavanger, Norway;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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