4.4 Article

Cosolvent effect on the dynamics of water in aqueous binary mixtures

期刊

MOLECULAR PHYSICS
卷 116, 期 7-8, 页码 1014-1025

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/00268976.2018.1424958

关键词

Amphiphilic; cosolvent; water rotation; molecular dynamics; Ivanov jump model

资金

  1. National Natural Science Foundation of China [21033008, 21373201]
  2. Science and Technological Ministry of China [2011YQ09000505]
  3. Scientific Research Foundation for Returned Scholars, Ministry of Education of China
  4. Liaoning BaiQianWan Talents Program [2015-73]

向作者/读者索取更多资源

Water rotational dynamics in the mixtures of water and amphiphilic molecules, such as acetone and dimethyl sulfoxide (DMSO), measured by femtosecond infrared, often vary non-monotonically as the amphiphilic molecule's molar fraction changes from 0 to 1. Recent study has attributed the non-ideal water rotation with concentration in DMSO-water mixtures to different microscopic hydrophilic-hydrophobic segregation structure in water-rich and water-poor mixtures. Interestingly, the acetone molecule has very similar molecular structure to DMSO, but the extremum of the water rotational time in the DMSO-water mixtures significantly shifts to lower concentration and the rotation of water is much faster than those in acetone-water mixtures. The simulation results here shows that the non-ideal rotational dynamics of water in both mixtures are due to the frame rotation during the interval of hydrogen bond (HB) switchings. A turnover of the frame rotation with concentration takes place as the structure transition of mixture from the hydrogen bond percolation structure to the hydrophobic percolation structure. The weak acetone-water hydrogen bond strengthens the hydrophobic aggregation and accelerates the relaxation of the hydrogen bond, so that the structure transition takes places at lower concentration and the rotation of water is faster in acetone-water mixture than in DMSO-water mixture. A generally microscopic picture on the mixing effect on the water dynamics in binary aqueous mixtures is presented here.

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