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The nature of interfacial binding of imidazole and carbene ligands with M20 nanoclusters (M = Au, Ag and Cu) - a theoretical study

机译:咪唑和卡宾配体与M20纳米簇(M = Au,Ag和Cu)的界面结合性质-理论研究

摘要

To inspire more exciting developments in the design and advances of self-assembled monolayers (SAMs), the fundamental understanding of the nature of interaction between metal nanoparticles and certain functional groups is very crucial. In this work, the interactions of imidazole based organic ligands with metal clusters (M) were analyzed by using quantum theory of atoms in molecules (QTAIM) calculations and energy decomposition (EDA) techniques based on the orbitals optimized by density functional theory method (DFT). Imidazole (IMI) and carbene ligands (a-NHC and n-NHC) were considered for their interaction on the apex and face center position of the three different coinage metal clusters Au, Ag and Cu. The adsorption energies indicated the following behaviour in those complexes: (1) ligands adsorbed on the apex-A position of M clusters are more stable and less reactive, (2) the chemical stability of the carbene ligands is high, and (3) of the two NHCs considered here, our findings show a higher interfacial binding strength for a-NHC with M surfaces. Natural population analysis showed the charge transfer from imidazole to M with N-M coordination bonding and the existence of strong C-M covalent bonding for carbene-n,a-NHC-M-complexes. QTAIM calculations again confirmed the covalent interactions in the latter complexes. Furthermore, energy decomposition analyses were performed to obtain the energetic properties of bonding for all the complexes.
机译:为了激发自组装单分子膜(SAM)的设计和进步方面更激动人心的发展,对金属纳米颗粒与某些官能团之间相互作用的本质的基本理解至关重要。在这项工作中,通过使用分子中原子的量子理论(QTAIM)计算和基于密度泛函理论方法(DFT)优化的轨道的能量分解(EDA)技术,分析了咪唑基有机配体与金属簇(M)的相互作用。 )。考虑了咪唑(IMI)和卡宾配体(a-NHC和n-NHC)在三个不同造币金属簇Au,Ag和Cu的顶点和面心位置上的相互作用。在这些络合物中的吸附能表明以下行为:(1)吸附在M团簇的顶点A位置的配体更稳定且反应性更小;(2)卡宾配体的化学稳定性高;和(3)在这里考虑的两个NHC中,我们的发现显示,具有M表面的a-NHC具有更高的界面结合强度。自然种群分析表明,咪唑通过N-M配位键从电荷转移至M,并存在卡宾-n,a-NHC-M络合物强C-M共价键。 QTAIM计算再次证实了后者复合物中的共价相互作用。此外,进行能量分解分析以获得所有配合物的结合的能量性质。

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  • 作者

    Geethalakshmi K. R.;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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