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Translational and reorientational dynamics in carboxylic acid-based deep eutectic solvents
被引:2
|作者:
Schulz, A.
[1
]
Moch, K.
[2
]
Hinz, Y.
[2
]
Lunkenheimer, P.
[1
]
Boehmer, R.
[2
]
机构:
[1] Univ Augsburg, Ctr Elect Correlat & Magnetism, Expt Phys 5, D-86159 Augsburg, Germany
[2] Tech Univ Dortmund, Fak Phys, D-44221 Dortmund, Germany
来源:
关键词:
GLASS-FORMING LIQUIDS;
TEMPERATURE MIXTURES LTTMS;
STOKES-EINSTEIN RELATION;
CHOLINE CHLORIDE;
IONIC LIQUIDS;
DIELECTRIC-RELAXATION;
MAGNETIC-RESONANCE;
PLASTIC CRYSTAL;
TRANSITION;
WATER;
D O I:
10.1063/5.0189533
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
The glass formation and the dipolar reorientational motions in deep eutectic solvents (DESs) are frequently overlooked, despite their crucial role in defining the room-temperature physiochemical properties. To understand the effects of these dynamics on the ionic conductivity and their relation to the mechanical properties of the DES, we conducted broadband dielectric and rheological spectroscopy over a wide temperature range on three well-established carboxylic acid-based natural DESs. These are the eutectic mixtures of choline chloride with oxalic acid (oxaline), malonic acid (maline), and phenylacetic acid (phenylaceline). In all three DESs, we observe signs of a glass transition in the temperature dependence of their dipolar reorientational and structural dynamics, as well as varying degrees of motional decoupling between the different observed dynamics. Maline and oxaline display a breaking of the Walden rule near the glass-transition temperature, while the relation between the dc conductivity and dipolar relaxation time in both maline and phenylaceline is best described by a power law. The glass-forming properties of the investigated systems not only govern the orientational dipolar motions and rheological properties, which are of interest from a fundamental point of view, but they also affect the dc conductivity, even at room temperature, which is of high technical relevance.
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页数:11
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