Literature DB >> 33491712

Gauging van der Waals interactions in aqueous solutions of 2D MOFs: when water likes organic linkers more than open-metal sites.

Mohammad R Momeni1, Zeyu Zhang1, David Dell'Angelo1, Farnaz A Shakib1.   

Abstract

Molecular dynamics simulations combined with periodic electronic structure calculations are performed to decipher structural, thermodynamical and dynamical properties of the interfaced vs. confined water adsorbed in hexagonal 1D channels of the 2D layered electrically conductive Cu3(HHTP)2 and Cu3(HTTP)2 metal-organic frameworks (HHTP = 2,3,6,7,10,11-hexahydroxytriphenylene and HTTP = 2,3,6,7,10,11-hexathiotriphenylene). Comparing water adsorption in bulk vs. slab models of the studied 2D MOFs shows that water is preferentially adsorbed on the framework walls via forming hydrogen bonds to the organic linkers rather than by coordinating to the coordinatively unsaturated open-Cu2+ sites. Theory predicts that in Cu3(HTTP)2 the van der Waals interactions are stronger which helps the MOF maintain its layered morphology with allowing very little water molecules to diffuse into the interlayer space. Data presented in this work are general and helpful in implementing new strategies for preserving the integrity as well as electrical conductivity of porous materials in aqueous solutions.

Entities:  

Year:  2021        PMID: 33491712     DOI: 10.1039/d0cp05923d

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.945


  1 in total

1.  Tunable Carrier Type of a Semiconducting 2D Metal-Organic Framework Cu3(HHTP)2.

Authors:  Maria de Lourdes Gonzalez-Juarez; Carlos Morales; Jan Ingo Flege; Eduardo Flores; Marisol Martin-Gonzalez; Iris Nandhakumar; Darren Bradshaw
Journal:  ACS Appl Mater Interfaces       Date:  2022-03-01       Impact factor: 9.229

  1 in total

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