ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
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Possible relation of water structural relaxation to water anomalies.Hydrodynamic and nonhydrodynamic contributions to the bimolecular collision rates of solute molecules in supercooled bulk water.The thermodynamical response functions and the origin of the anomalous behavior of liquid water.Thermodynamic properties of bulk and confined water.Communications: The fractional Stokes-Einstein equation: application to water.Density and anomalous thermal expansion of deeply cooled water confined in mesoporous silica investigated by synchrotron X-ray diffraction.The dynamic crossover in water does not require bulk water.Molecular probe dynamics reveals suppression of ice-like regions in strongly confined supercooled waterESR study of interfacial hydration layers of polypeptides in water-filled nanochannels and in vitrified bulk solvents.Density hysteresis of heavy water confined in a nanoporous silica matrix.Mesopores provide an amorphous state suitable for studying biomolecular structures at cryogenic temperaturesEffect of common cryoprotectants on critical warming rates and ice formation in aqueous solutions.Heterogeneous ordered-disordered structure of the mesodomain in frozen sucrose-water solutions revealed by multiple electron paramagnetic resonance spectroscopiesThe liquid water polymorphism.Rotation of Four Small Nitroxide Probes in Supercooled Bulk Water.Widom line and dynamical crossovers as routes to understand supercritical water.A singular thermodynamically consistent temperature at the origin of the anomalous behavior of liquid water.Common features of simple water models.Electron spin-labelling of the EutC subunit in B12-dependent ethanolamine ammonia-lyase reveals dynamics and a two-state conformational equilibrium in the N-terminal, signal-sequence-associated domain.Mesodomain and Protein-Associated Solvent Phases with Temperature-Tunable (200-265 K) Dynamics Surround Ethanolamine Ammonia-Lyase in Globally Polycrystalline Aqueous Solution Containing Dimethyl Sulfoxide.A comprehensive scenario of the thermodynamic anomalies of water using the TIP4P/2005 model.Spin probe dynamics of n-hexadecane in confined geometryElusive forms of water found?
P2860
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P2860
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 25 June 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
@en
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
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type
label
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
@en
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
@nl
prefLabel
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
@en
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
@nl
P2093
P2860
P356
P1476
ESR evidence for 2 coexisting liquid phases in deeply supercooled bulk water.
@en
P2093
P2860
P304
11448-11453
P356
10.1073/PNAS.0900734106
P407
P577
2009-06-25T00:00:00Z