在 Hz-GHz 频率窗测量(甜菜碱 + 尿素 + 水)深共晶溶剂随温度变化的介电弛豫:对成分贡献和弛豫机制的微观洞察。

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry B Pub Date : 2024-07-01 DOI:10.1021/acs.jpcb.4c02784
Jayanta Mondal, Dhrubajyoti Maji, Sudipta Mitra, Ranjit Biswas
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摘要

为了探索和理解该系统的相互作用和动力学,我们对甜菜碱、尿素和水组成的深共晶溶剂(DES)的介电弛豫(DR)进行了实验和模拟相结合的研究,其组成为[甜菜碱:尿素:水 = 11.7:12:1(重量比)和 9:18:5(摩尔比)]。结合三种不同的测量设置,在 9 个十年频率范围内进行了随温度变化(303 ≤ T/K ≤ 343)的测量。测量到的 DR 包括四个不同的步骤,弛豫时间从几皮秒到几纳秒不等,与模拟结果十分吻合。将模拟的总弛豫光谱分解为三个自身(种内)和三个交叉(种间)相互作用贡献后发现,甜菜碱-甜菜碱自身项主导了弛豫(∼65%),而尿素-尿素和水-水相互作用分别只贡献了∼7%和∼1%。交叉作用(甜菜碱-尿素、甜菜碱-水和尿素-水)共占 s ∼ 2)。此外,模拟的第一级集体单粒子重取向弛豫(C1(t))和结构 H 键波动动力学(CHB(t))表现出多指数动力学,其时间尺度与模拟和测量的 DR 中发现的时间尺度十分吻合。
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Temperature-Dependent Dielectric Relaxation Measurements of (Betaine + Urea + Water) Deep Eutectic Solvent in Hz-GHz Frequency Window: Microscopic Insights into Constituent Contributions and Relaxation Mechanisms.

A combined experimental and simulation study of dielectric relaxation (DR) of a deep eutectic solvent (DES) composed of betaine, urea, and water with the composition [Betaine:Urea:Water = 11.7:12:1 (weight ratio) and 9:18:5 (molar ratio)] was performed to explore and understand the interaction and dynamics of this system. Temperature-dependent (303 ≤ T/K ≤ 343) measurements were performed over 9 decades of frequency, combining three different measurement setups. Measured DR, comprising four distinct steps with relaxation times spreading over a few picoseconds to several nanoseconds, was found to agree well with simulations. The simulated total DR spectra, upon dissection into three self (intraspecies) and three cross (interspecies) interaction contributions, revealed that the betaine-betaine self-term dominated (∼65%) the relaxation, while the urea-urea and water-water interactions contributed only ∼7% and ∼1%, respectively. The cross-terms (betaine-urea, betaine-water, and urea-water) together accounted for <30% of the total DR. The slowest DR component with a time constant of ∼1-10 ns derived dominant contribution from betaine-betaine interactions, where betaine-water and urea-water interactions also contributed. The subnanosecond (0.1-0.6 ns) time scale originated from all interactions except betaine-water interaction. An extensive interaction of water with betaine and urea severely reduced the average number of water-water H-bonds (∼0.7) and heavily decreased the static dielectric constant of water in this DES (εs ∼ 2). Furthermore, simulated first rank collective single particle reorientational relaxations (C1(t)) and the structural H-bond fluctuation dynamics (CHB (t)) exhibited multiexponential kinetics with time scales that corresponded well with those found both in the simulated and measured DR.

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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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