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On the decoupling of relaxation modes in a molecular liquid caused by isothermal introduction of 2 nm structural inhomogeneities
Kazuhide Ueno, Charles Angell
Renewable Energy Electrochemistry, Center for (CREE)
Molecular Sciences, School of (SMS)
Bioenergy and Photosynthesis, Center for (C&BP)
Research output
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Contribution to journal
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Article
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peer-review
14
Scopus citations
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Dive into the research topics of 'On the decoupling of relaxation modes in a molecular liquid caused by isothermal introduction of 2 nm structural inhomogeneities'. Together they form a unique fingerprint.
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Physics & Astronomy
decoupling
100%
inhomogeneity
81%
cresols
59%
liquids
51%
viscosity
28%
glass
22%
glass transition temperature
18%
aqueous solutions
18%
liquid phases
16%
proteins
15%
cooling
13%
temperature
11%
molecules
10%
Engineering & Materials Science
Relaxation
90%
Liquids
65%
Glass transition
44%
Viscosity
31%
Ionic liquids
27%
Phase separation
25%
Superconducting transition temperature
21%
Molecules
19%
Proteins
17%
Temperature
15%
Glass
15%
Cooling
13%
Chemical Compounds
Liquid
52%
Cresol
32%
Polyhedral Oligomeric Silsesquioxane
30%
Glass Transition
26%
Heterogeneity
22%
Cooling
21%
Phase Separation
21%
Glass Transition Temperature
20%
Ionic Liquid
18%
Glass
16%
Diffusion
15%
Aqueous Solution
12%
Protein
10%
Molecule
8%