首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >AbInitio and DFT Studies on CO2 Interacting with Znq+-Imidazole (q=0, 1, 2) Complexes: Prediction of Charge Transfer through sigma- or pi-Type Models
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AbInitio and DFT Studies on CO2 Interacting with Znq+-Imidazole (q=0, 1, 2) Complexes: Prediction of Charge Transfer through sigma- or pi-Type Models

机译:与Znq +-咪唑(q = 0、1、2)配合物相互作用的CO2的从头算和DFT研究:通过sigma型或pi型模型预测电荷转移

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Using first-principles methodologies, the equilibrium structures and the relative stability of CO2@[Zn(q+)Im] (where q=0, 1, 2; Im=imidazole) complexes are studied to understand the nature of the interactions between the CO2 and Znq+-imidazole entities. These complexes are considered as prototype models mimicking the interactions of CO2 with these subunits of zeolitic imidazolate frameworks or Zn enzymes. These computations are performed using both abinitio calculations and density functional theory. Dispersion effects accounting for long-range interactions are considered. Solvent (water) effects were also considered using a polarizable continuum model approach. Natural bond orbital, charge, frontier orbital and vibrational analyses clearly reveal the occurrence of charge transfer through covalent and noncovalent interactions. Moreover, it is found that CO2 can adsorb through more favorable -type stacking as well as sigma-type hydrogen-bonding interactions. The inter-monomer interaction potentials show a significant anisotropy that might induce CO2 orientation and site-selectivity effects in porous materials and in active sites of Zn enzymes. Hence, this study provides valuable information about how CO2 adsorption takes place at the microscopic level within zeolitic imidazolate frameworks and biomolecules. These findings might help in understanding the role of such complexes in chemistry, biology and material science for further development of new materials and industrial applications.
机译:使用第一性原理方法,研究了CO2 @ [Zn(q +)Im](其中q = 0,1,2; Im =咪唑)配合物的平衡结构和相对稳定性,以了解CO2之间相互作用的性质和Znq +-咪唑实体。这些复合物被认为是模仿CO2与沸石咪唑酸盐骨架或Zn酶这些亚基相互作用的原型模型。这些计算是使用从头算和密度泛函理论进行的。考虑了考虑长距离相互作用的色散效应。还使用可极化连续体模型方法考虑了溶剂(水)效应。天然键轨道,电荷,边界轨道和振动分析清楚地揭示了通过共价和非共价相互作用发生的电荷转移。此外,发现CO 2可以通过更有利的类型堆积以及σ型氢键相互作用来吸附。单体间的相互作用势显示出显着的各向异性,该各向异性可能在多孔材料和Zn酶的活性位点中引起CO2定向和位点选择性效应。因此,这项研究提供了有关在沸石咪唑酸盐骨架和生物分子内微观水平如何发生CO2吸附的有价值的信息。这些发现可能有助于理解此类络合物在化学,生物学和材料科学中对进一步开发新材料和工业应用的作用。

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