4.7 Article

Non-monotonic dynamics of water in its binary mixture with 1,2-dimethoxy ethane: A combined THz spectroscopic and MD simulation study

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 145, Issue 16, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4964857

Keywords

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Funding

  1. Department of Science and Technology (DST), INDIA
  2. Cluster of Excellence RESOLV [EXC 1069]

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A combined experimental (mid- and far-infrared FTIR spectroscopy and THz time domain spectroscopy (TTDS) (0.3-1.6 THz)) and molecular dynamics (MD) simulation technique are used to understand the evolution of the structure and dynamics of water in its binary mixture with 1,2-dimethoxy ethane (DME) over the entire concentration range. The cooperative hydrogen bond dynamics of water obtained from Debye relaxation of TTDS data reveals a non-monotonous behaviour in which the collective dynamics is much faster in the low X-w region (where X-w is the mole fraction of water in the mixture), whereas in X-w similar to 0.8 region, the dynamics gets slower than that of pure water. The concentration dependence of the reorientation times of water, calculated from the MD simulations, also captures this non-monotonous character. The MD simulation trajectories reveal presence of large amplitude angular jumps, which dominate the orientational relaxation. We rationalize the non-monotonous, concentration dependent orientational dynamics by identifying two different physical mechanisms which operate at high and low water concentration regimes. Published by AIP Publishing.

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