INTERFACIAL AND CONFINED WATER Part 5 potx

INTERFACIAL AND CONFINED WATER Part 5 potx

INTERFACIAL AND CONFINED WATER Part 5 potx

... water molecules show orientational This page intentionally left blank 136 Interfacial and confined water P (H max ) P (H max ) N 5 450 N 5 400 N 5 350 0. 25 0 .50 0. 75 0. 25 0 .50 0. 75 N 5 300 N 5 ... 0 .50 0. 75 N 5 300 N 5 250 N 5 200 N 5 150 N 5 1000 N 5 900 N 5 1100 N 5 1300 N 5 1200 R sp 5 15 Å H max / (R sp 1 3Å) H max / (R sp 1 3Å) R sp...

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INTERFACIAL AND CONFINED WATER Part 1 doc

INTERFACIAL AND CONFINED WATER Part 1 doc

... evaporation 114 5 Water layers at hydrophilic surfaces 121 5. 1 Percolation transition of hydration water 121 5. 2 Structure of water layers at hydrophilic surfaces 139 6 Role of interfacial water in ... of water, and patience. We have greatly profited from collaboration with Roland Winter, Nikolay Smolin, Aljaksei Krukau, and Alexey Mazur. Our view on the properties of int...

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INTERFACIAL AND CONFINED WATER Part 2 docx

INTERFACIAL AND CONFINED WATER Part 2 docx

... K 1 2 liquid vapor 5 10 15 5 10 15 Figure 28: Density profiles of water in a cylindrical pore with R p = 25 ˚ A and U 0 = −4.62 kcal/mol at T = 300, 3 25, 350 , 3 75, 400, 4 25, 450 , 4 75, and 50 0 K. Two water layers ... systems. Surface transitions of water 47 450 400 350 300 250 0.00 0. 05 0.10 0. 15 0.20 T (K) ␳ *(Å 22 ) R p 5 25 Å; U 0 52 3.08 kcal/mol R p 5...

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INTERFACIAL AND CONFINED WATER Part 3 docx

INTERFACIAL AND CONFINED WATER Part 3 docx

... the 78 Interfacial and confined water 0.0 0.2 0.4 0.6 0.8 1.0 0.0 0.2 0.4 0.6 0.8 1.0 250 350 450 55 0 250 350 450 55 0 250 350 450 55 0 250 350 450 55 0 H 5 6 Å H 5 9 Å H 5 30 ÅH 5 15 Å H 5 12 Å ␳ ... power 82 Interfacial and confined water 2␰ ∼ 12. 75 Å 2␰ ∼ 6. 75 Å 2␰ ∼ 3. 75 Å 0 .5 0 .5 0 .5 0 .5 0.1 0.1 0.1 0.1 surface layer ( i 5 1)...

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INTERFACIAL AND CONFINED WATER Part 4 docx

INTERFACIAL AND CONFINED WATER Part 4 docx

... (g/cm 3 ) 25 −0.39 55 5 ± 50 . 150 ± 0.007 25 −1.93 52 2 .5 ± 50 .37 ± 0.01 25 −3.08 50 2 .5 ± 50 .63 ± 0.02 25 −3. 85 502 ± 50 .70 ± 0.01 25 −4.62 50 2 .5 ± 50 .70 ± 0.01 20 −0.39 54 0.0 ± 50 . 156 ± 0.007 20 ... 482 .5 ± 50 .79 ± 0.01 15 −0.39 53 5.0 ± 10 0.172 ± 0.007 15 −4.62 355 ± 10 0.92 ± 0.07 12 −0.39 53 5 ± 15 0.22 ± 0.01 12 −1.93 52 0 ± 15 0.24 ±...

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INTERFACIAL AND CONFINED WATER Part 6 pdf

INTERFACIAL AND CONFINED WATER Part 6 pdf

... [52 6 52 8, 53 5], bacteriorhodopsin [484, 486, 50 7, 53 8], myoglobin [52 4, 52 5, 53 0, 53 1, 53 3, 53 4, 53 6, 53 7], lysozyme [51 4, 51 5, 52 8, 53 9], carbohydrates [54 0], etc.) varies within relatively narrow ... dry as it requires some minimal amount of water [51 4, 52 7, 52 8, 53 0, 53 8, 54 0– 54 2] and may be strongly affected by the presence of cosolvents [51...

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INTERFACIAL AND CONFINED WATER Part 7 pptx

INTERFACIAL AND CONFINED WATER Part 7 pptx

... hydration water were studied in most details (see Section 6, 7.1 and [473, 50 8 51 0, 51 2 51 5, 54 4, 58 5, 59 0 59 2, 601, 632–634, 636–639]). At low hydrations and up to h ≈ 0.07 g/g (gram of water per ... surface during hundreds of picoseconds. 204 Interfacial and confined water 15 3.0 2 .5 2.0 1 .5 0 .5 1.0 20 25 30 5 10 152 0 253 0 D (10 Ϫ9 m 2 s Ϫ1 ) 5 ps <...

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INTERFACIAL AND CONFINED WATER Part 8 ppsx

INTERFACIAL AND CONFINED WATER Part 8 ppsx

... 4.4 4.6 4.8 5 5.2 5. 4 2 25 250 2 75 300 3 25 350 3 75 D (Å) T (K) D 5 4 .5 Å ELP maximum of S mean R 5 50% R 5 95% n S ∼ S 22. 05 Figure 132: Temperature of the percolation threshold of water in the ... (fragile) water, the pressure-induced denaturation transition of hydrated proteins (see [6 65 667] and Section 6) may be related to 226 Interfacial and confined wat...

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INTERFACIAL AND CONFINED WATER Part 9 pps

INTERFACIAL AND CONFINED WATER Part 9 pps

... substrates, Phys. Rev. Lett. 59 (1987) 55 5 55 8. [272] W. Fenzl, Scaling properties of the surface tension of isobutyric- acid -water mixtures, Europhys. Lett. 24 (1993) 55 7 56 2. [273] J H. Cho, B. ... supercooled confined water, Phys. Rev. Lett. 95 (20 05) 117802. [244] X. Huang, R. Zhou, B. Berne, Drying and hydrophobic collapse of paraffin plates, J. Phys. Chem. B 109 (8) (20 05) 3...

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INTERFACIAL AND CONFINED WATER Part 10 doc

INTERFACIAL AND CONFINED WATER Part 10 doc

... (1981) 3233–3234. [55 6] H. Batzer, U. T. Kreibich, Influence of water on thermal transi- tions in natural polymers and synthetic polyamides, Polym. Bull. 5 (1981) 58 5 59 0. [55 7] G. Nimtz, A. Enders, ... 33 (1994) 92 85 9293. [52 2] R. H. Austin, K. W. Beeson, L. Eisenstein, H. Frauenfelder, I. C. Gunsalus, Dynamics of ligand binding to myoglobin, Bio- chemistry 14 (19 75) 53 55...

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