Literature DB >> 21383999

On the hydrogen bond networks in the water-methanol mixtures: topology, percolation and small-world.

Juliana Angeiras Batista da Silva1, Francisco George Brady Moreira, Vivianni Marques Leite dos Santos, Ricardo Luiz Longo.   

Abstract

Statistical mechanics based topological analysis and island (or cluster) statistics were used to study the hydrogen bond (H-bond) networks in the water-methanol mixtures with the following methanol mole fractions (x(m)): 0.00, 0.10, 0.20, 0.25, 0.28, 0.30, 0.32, 0.36, 0.38, 0.42, 0.50, 0.60, 0.70, 0.80, 0.90, 1.00. NPT-Monte Carlo simulations were performed at room conditions using the TIP5P model potential for water and united-atoms (OPLS) for methanol to generate the H-bond networks. We have found evidence for non-ideal behavior of mixtures with x(m) ≈ 0.3. Several structural and topological properties present strong dependence with the mixture composition. Island statistics indicate a change from the percolated to non-percolate regime at x(m) ≈ 0.5. Statistical analysis of the islands' nature (homo-clusters: same type of molecules × hetero-clusters: two types of molecules) yields a preferential formation of homo-clusters that quantifies the local composition and preferential solvation ("microimmiscibility"). The topology of the hydrogen bond networks was characterized by local (clustering coefficients, average degrees), semi-global (path lengths) and global (spectral densities) properties. Small-world patterns (highly clustered and small path lengths) appear for x(m) in the range 0.40-0.70, and the momenta in the spectral densities correlate quite well with previous analysis based on rings, chains and branched chains topologies. It also seems that small quantities of methanol in water cause disruption of the continuous fully connected H-bond networks formed by water molecules.

Entities:  

Year:  2011        PMID: 21383999     DOI: 10.1039/c0cp01802c

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  6 in total

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2.  Sealed Gravitational Capillary Viscometry of Dimethyl Ether and Two Next-Generation Alternative Refrigerants.

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5.  Weighted persistent homology for osmolyte molecular aggregation and hydrogen-bonding network analysis.

Authors:  D Vijay Anand; Zhenyu Meng; Kelin Xia; Yuguang Mu
Journal:  Sci Rep       Date:  2020-06-16       Impact factor: 4.379

6.  Anomalous interfacial dynamics of single proton charges in binary aqueous solutions.

Authors:  Jean Comtet; Archith Rayabharam; Evgenii Glushkov; Miao Zhang; Ahmet Avsar; Kenji Watanabe; Takashi Taniguchi; Narayana R Aluru; Aleksandra Radenovic
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  6 in total

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