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Interaction and dynamics of (alkylamide + electrolyte) deep eutectics: dependence on alkyl chain-length, temperature, and anion identity.

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TLDR
Representative all-atom molecular dynamics simulations of (CH3CONH2 + LiX) DEs at different temperatures reveal strongly stretched exponential relaxation of wavevector dependent acetamide self dynamic structure factor with time constants dependent both on ion identity and temperature, providing justification for explaining the fluorescence results in terms of temporal heterogeneity and amide clustering in these multi-component melts.
Abstract
Here we investigate the solute-medium interaction and solute-centered dynamics in (RCONH2 + LiX) deep eutectics (DEs) via carrying out time-resolved fluorescence measurements and all-atom molecular dynamics simulations at various temperatures. Alkylamides (RCONH2) considered are acetamide (CH3CONH2), propionamide (CH3CH2CONH2), and butyramide (CH3CH2CH2CONH2); the electrolytes (LiX) are lithium perchlorate (LiClO4), lithium bromide (LiBr), and lithium nitrate (LiNO3). Differential scanning calorimetric measurements reveal glass transition temperatures (Tg) of these DEs are ∼195 K and show a very weak dependence on alkyl chain-length and electrolyte identity. Time-resolved and steady state fluorescence measurements with these DEs have been carried out at six-to-nine different temperatures that are ∼100–150 K above their individual Tgs. Four different solute probes providing a good spread of fluorescence lifetimes have been employed in steady state measurements, revealing strong excitation wavelength dependence of probe fluorescence emission peak frequencies. Extent of this dependence, which shows sensitivity to anion identity, has been found to increase with increase of amide chain-length and decrease of probe lifetime. Time-resolved measurements reveal strong fractional power dependence of average rates for solute solvation and rotation with fraction power being relatively smaller (stronger viscosity decoupling) for DEs containing longer amide and larger (weaker decoupling) for DEs containing perchlorate anion. Representative all-atom molecular dynamics simulations of (CH3CONH2 + LiX) DEs at different temperatures reveal strongly stretched exponential relaxation of wavevector dependent acetamide self dynamic structure factor with time constants dependent both on ion identity and temperature, providing justification for explaining the fluorescence results in terms of temporal heterogeneity and amide clustering in these multi-component melts.

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Citations
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Journal ArticleDOI

Reorientational jump dynamics and its connections to hydrogen bond relaxation in molten acetamide: an all-atom molecular dynamics simulation study.

TL;DR: H-bond relaxation times obtained from the molecular dynamics simulations corroborate well with the time scales associated with the jump and waiting time distributions, suggesting an interrelationship between jump dynamics and H-bonding fluctuations.
Journal ArticleDOI

Orientational Jumps in (Acetamide + Electrolyte) Deep Eutectics: Anion Dependence.

TL;DR: All-atom molecular dynamics simulations carried out to investigate orientation jumps of acetamide molecules in three different ionic deep eutectics suggest the presence of dynamic heterogeneity in these systems and supports earlier conclusions from time-resolved fluorescence measurements.
Journal ArticleDOI

Slow solvation in ionic liquids: connections to non-Gaussian moves and multi-point correlations.

TL;DR: This paper explores an interconnection between timescales of dynamic heterogeneity (DH) in a neat ionic liquid, 1-butyl-3-methylimidazolium hexafluorophosphate ([Bmim][PF6]), and slow solvation of a dipolar solute, coumarin 153 (C153) in it at 298 K and 450 K, suggesting DH as a source for theSlow solvation at long-time in IL.
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Reline aqueous solutions behaving as liquid mixtures of H-bonded co-solvents: microphase segregation and formation of co-continuous structures as indicated by Brillouin and 1H NMR spectroscopies

TL;DR: Brillouin spectroscopy revealed the formation of a co-continuous structure resulting from local structure rearrangements and micro-segregation into aqueous and DES phases in liquid mixtures of H-bonded co-solvents.
Journal ArticleDOI

Solute Rotation and Translation Dynamics in an Ionic Deep Eutectic Solvent Based on Choline Chloride.

TL;DR: The liquid state structure of ethaline is examined by studying the rotational and translational diffusion dynamics of the solutes measured by monitoring the time dependence of fluorescence anisotropy in ensemble condition and fluorescence correlation signal of extremely dilute samples diffusing through confocal volume.
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