Literature DB >> 28383885

Competition between Hydrogen Bonds and Coordination Bonds Steered by the Surface Molecular Coverage.

Liangliang Cai1, Qiang Sun1, Meiling Bao1, Honghong Ma1, Chunxue Yuan1, Wei Xu1.   

Abstract

In addition to the choices of metal atoms/molecular linkers and surfaces, several crucial parameters, including surface temperature, molecular stoichiometric ratio, electrical stimulation, concentration, and solvent effect for liquid/solid interfaces, have been demonstrated to play key roles in the formation of on-surface self-assembled supramolecular architectures. Moreover, self-assembled structural transformations frequently occur in response to a delicate control over those parameters, which, in most cases, involve either conversions from relatively weak interactions to stronger ones (e.g., hydrogen bonds to coordination bonds) or transformations between the comparable interactions (e.g., different coordination binding modes or hydrogen bonding configurations). However, intermolecular bond conversions from relatively strong coordination bonds to weak hydrogen bonds were rarely reported. Moreover, to our knowledge, a reversible conversion between hydrogen bonds and coordination bonds has not been demonstrated before. Herein, we have demonstrated a facile strategy for the regulation of stepwise intermolecular bond conversions from the metal-organic coordination bond (Cu-N) to the weak hydrogen bond (CH···N) by increasing the surface molecular coverage. From the DFT calculations we quantify that the loss in intermolecular interaction energy is compensated by the increased molecular adsorption energy at higher molecular coverage. Moreover, we achieved a reversible conversion from the weak hydrogen bond to the coordination bond by decreasing the surface molecular coverage.

Entities:  

Keywords:  bond conversion; hydrogen bond; metal−organic coordination bond; scanning tunneling microscopy; self-assembly

Year:  2017        PMID: 28383885     DOI: 10.1021/acsnano.6b08374

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  3 in total

1.  DL-3-Aminoisobutyric acid: vibrational, NBO and AIM analysis of N-H⋯O bonded-zwitterionic dimer model.

Authors:  Shashikala Yalagi; Jagdish Tonannavar; Jayashree Tonannavar
Journal:  Heliyon       Date:  2019-06-18

2.  Assembling Shape-Persistent High-Order Sierpiński Triangular Fractals.

Authors:  Zhilong Jiang; Die Liu; Mingzhao Chen; Jun Wang; He Zhao; Yiming Li; Zhe Zhang; Tingzheng Xie; Feng Wang; Xiaopeng Li; George R Newkome; Pingshan Wang
Journal:  iScience       Date:  2020-04-16

3.  Visualization of Ion|Surface Binding and In Situ Evaluation of Surface Interaction Free Energies via Competitive Adsorption Isotherms.

Authors:  Pierluigi Bilotto; Alexander M Imre; Dominik Dworschak; Laura L E Mears; Markus Valtiner
Journal:  ACS Phys Chem Au       Date:  2021-08-23
  3 in total

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