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新设计的脲键联二茂铁-苯并咪唑偶联物的比较阳离子传感性能:DFT 研究。

Comparative cation sensing properties of a newly designed urea linked ferrocene-benzimidazole dyad: a DFT study.

机构信息

Faculty of Science, Department of Chemistry, Hacettepe University, Ankara, Turkey.

Faculty of Science, Department of Chemistry, Ankara University, Ankara, Turkey.

出版信息

J Mol Model. 2020 Feb 7;26(3):50. doi: 10.1007/s00894-020-4304-0.

Abstract

Herein, our primary motivation was to elucidate the electronic and physicochemical properties of a novel molecular dyad consisting of ferrocene (Fc; electron donor), urea (u; linker), and amphoteric benzimidazole (BI; electron acceptor) entities. The sensor responses were investigated for various divalent transition metal cations (Mn, Fe, Co, Ni, Cu, and Zn) and the selectivity of this cationophore molecule (Fc-u-BI) to copper ion (Cu) was demonstrated by using B3LYP/LANL2DZ method. According to the thermochemical calculations, we justified that Fc-u-BI⋯Cu reached to the lowest binding energy (∆E), enthalpy (∆H), and Gibbs free energy (∆G) changes. In the light of the calculated global descriptors, Fc-u-BI⋯Cu was found to be the softer and thus the most reactive complex. The complex stabilities and their corresponding non-covalent interactions were also investigated by NBO and NCI analyses, respectively. The mechanistic insight into metal cation sensing by the modeled cationophore dyad.

摘要

在此,我们的主要动机是阐明由二茂铁(Fc;电子供体)、脲(u;连接体)和两性苯并咪唑(BI;电子受体)实体组成的新型分子偶联物的电子和物理化学性质。使用 B3LYP/LANL2DZ 方法研究了传感器对各种二价过渡金属阳离子(Mn、Fe、Co、Ni、Cu 和 Zn)的响应,并证明了这种载体分子(Fc-u-BI)对铜离子(Cu)的选择性。根据热化学计算,我们证明 Fc-u-BI⋯Cu 达到了最低结合能(∆E)、焓(∆H)和吉布斯自由能(∆G)变化。根据计算的全局描述符,Fc-u-BI⋯Cu 被发现是更软的,因此也是最反应性的络合物。通过 NBO 和 NCI 分析分别研究了配合物的稳定性及其相应的非共价相互作用。通过模拟的载体偶联物对金属阳离子感应的机理洞察。

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