P. J. van Maaren and D. van der Spoel,
Molecular dynamics of water with novel shell-model potentials, J. Phys. Chem. B105 (2001) 2618-2626.
[Back]
A. Brodsky, Is there predictive value
in water computer simulations? Chem. Phys. Lett.261 (1996) 563-568. [Back]
B.Guillot and Y. Guissani, How to build
a better pair potential for water, J. Chem. Phys. 114 (2001) 6720-6733. [Back]
M. T. Ru, S. Y. Hirokane, A. S. Lo,
J. S. Dordick, J. A. Reimer and D. S. Clark, On the salt-induced
activation of lyophilized enzymes in organic solvents: Effect
of salt kosmotropicity on enzyme activity, J. Am. Chem.
Soc. 122 (2000) 1565-1571. [Back]
F. M. Etzler and W. Drost-Hansen, Recent
thermodynamic data on vicinal water and a model for their
interpretation, Croatica Chemica Acta, 56 (1983) 563-592. W. Drost-Hansen, Temperature effects on
cell-functioning - A critical role for vicinal water, Cell.
Mol. Biol.47 (2001) 865-883. W. Drost-Hansen, Vicinal hydration of biopolymers: cell biological consequences, In Water and the cell, Ed. G. H. Pollack, I. L. Cameron and D. N. Wheatley (Springer, Dordrecht, 2006) pp. 175-217. [Back, 2]
J. L. Finney, The water molecule and
its interactions: the interaction between theory, modelling
and experiment, J. Mol. Liq.90 (2001) 303-312. [Back, 2]
H. Fukazawa, S. Ikeda and S. Mae, Incoherent
inelastic neutron scattering measurements on ice XI;
the proton-ordered phase of ice Ih
doped with KOH, Chem. Phys. Lett.282 (1998) 215-218. [Back, 2]
M.-C. Bellissent-Funel, Structure of
supercritical water, J. Mol. Liq.90 (2001) 313-322. [Back]
(a) S. LaPlaca and B. Post, Thermal expansion of ice, Acta Cryst.13 (1960) 503-505; (b) H. Tanaka, Hydrogen bonds between water
molecules: thermal expansivity of ice and water, J. Mol. Liq.90 (2001) 323-332. [Back]
I. M. Klotz, Parallel change with temperature
of water structure and protein behavior, J. Phys. Chem. B103 (1999) 5910-5916. [Back, 2, 3]
B. Madan and K. Sharp, Changes in water
structure induced by a hydrophobic solute probed by simulation
of the water hydrogen bond angle and radial distribution
functions, Biophys. Chem. 78 (1999)
33-41. [Back]
G. J. C. Limpert and J. L. Raber, Tests
of nonchemical scale control devices in a once-through system, Materials Performance, 24 (1985)
40-45. [Back]
Q. Du, E. Freysz and Y. R. Shen, Surface
vibrational spectroscopic studies of hydrogen bonding and
hydrophobicity, Science, 264 (1994)
826-82. [Back]
L. F. Scatena, M. G. Brown and G. L.
Richmond, Water at hydrophobic surfaces: weak hydrogen bonding
and strong orientation effects, Science, 292 (2001) 908-912. [Back, 2]
C. A. Angell, R. D. Bressel, M. Hemmati,
E. J. Sare and J. C. Tucker, Water and its anomalies in
perspective: tetrahedral liquids with and without liquid-liquid
phase transitions, Phys. Chem. Chem. Phys.2 (2000) 1559-1566. [Back, 2]
S. Büchner and A. Heuer, Metastable
states as a key to the dynamics of supercooled liquids, Phys. Rev. Lett. 84 (2000) 2168-2171.
[Back, 2]
S. J. Grabowski, A new measure of hydrogen
bonding strength - ab initio and atoms in molecules
studies, Chem. Phys. Lett.338 (2001) 361-366. [Back]
J. Lu, J. S. Brown, C. L. Liotta and
C.A. Eckert, Polarity and hydrogen-bonding of ambient to
near-critical water: Kamlet-Taft solvent parameters, Chem.
Commun. (2001) 665-666. [Back]
F. M. Goycoolea, M. Milas and M. Rinaudo,
Associative phenomena in galactomannan-deacetylated xanthan
systems, Int. J. Biol. Macromol.29 (2001) 181-192. [Back]
J. R. Grigera, An effective pair potential
for heavy water, J. Chem. Phys.114 (2001) 8064-8067. [Back]
J. C. Dore, M. A. M. Sufi and M. -C.
Bellissent-Funel, Structural change in D2O water
as a function of temperature; the isochoric temperature
derivative function for neutron diffraction, Phys. Chem.
Chem. Phys.2 (2000) 1599-1602. [Back, 2, 3]
Y. Yamaguchi, N. Yasutake and M. Nagaoka,
Theoretical prediction of proton chemical shift in supercritical
water using gas-phase approximation, Chem. Phys. Lett.340 (2001) 129-136. [Back, 2]
R. C. Dougherty, Density of salt solutions:
Effect of ions on the apparent density of water, J.
Phys. Chem. B105 (2001) 4514-4519.
[Back]
C-X. Li, S-B. Park, J-S. Kim and H.
Lee, A new generalized model for predicting the density
of single- and mixed-electrolyte solutions, Fluid Phase Equilib.145 (1998) 1-14. [Back]
P. Aussillous and D. Quéré,
Liquid marbles, Nature411 (2001)
924-927; N. Eshtiaghi and K. P. Hapgood, A quantitative framework for the formation of liquid marbles and hollow granules from hydrophobic powders, Powder Technol.223 (2012) 65-67; E. Bormashenko, Liquid marbles: Properties and applications, Curr. Opinion Coll. Interface Sci.16 (2011) 266-271. [Back] [Back to Top ]
R. Ludwig, Water: From clusters to
the bulk, Angew. Chem. Int. Ed.40 (2001) 1808-1827. [Back, 2]
G. O. Phillips and P. A. Williams, Handbook of hydrocolloids, CRC Press, Cambridge,
England (2000) [Back]
A. D. Blackwood, J. Salter, P. W. Dettmar
and M. F. Chaplin, Dietary fiber, physicochemical
properties and their relationship to health, J. Royal
Soc. Health120 (2000) 242-247. [Back]
M. F. Chaplin, Bile acids, fiber and
colon cancer: the story unfolds. J. Royal Soc. Health., 118 (1998) 53-61. [Back]
M. S. Izydorczyk and C. G. Biliaderis,
Cereal arabinoxylans: Advances in structure and physicochemical
properties, Carbohydr. Polym. 28 (1995) 33-48. [Back]
N. Sarkar, Kinetics of thermal gelation
of methylcellulose and hydroxypropylmethylcellulose in aqueous
solutions, Carbohydr. Polym.26 (1995) 195-203. [Back]
I. M. Hodge, Strong and fragile liquids
- A brief critique, J. Non-Cryst. Solids202 (1996) 164-172. C. M. Roland and K. L. Ngai, Commentary
on 'Strong and fragile liquids - A brief critique' J. Non-Cryst. Solids212 (1997)
74-76. I. M. Hodge, Reply to 'Commentary on 'Strong and
fragile liquids - A brief critique'' by C. M. Roland and
K. L. Ngai J. Non-Cryst. Solids212 (1997) 77-79. S. Sastry, Going strong or falling apart? Nature398 (1999) 467-470. [Back, 2]
B. E. Conway and E. Ayranci, Effective
ionic radii and hydration volumes for evaluation of solution
properties and ionic adsorption, J. Solution Chem. 28 (1999) 163-192. C. Li and H. Lee, Density calculation of
electrolyte solution with the solution osmotic pressure, Chem. Eng. Sci.55 (2000) 655-665.
[Back]
J. P. Roubroeks, R. Andersson, D. I.
Mastromauro, B. E. Christensen and P. Åman, Molecular
weight, structure and shape of oat (13),(14)-β-D-glucan
fractions obtained by enzymatic degradation with (14)-β-D-glucan
4-glucanohydrolase from Trichoderma reesei, Carbohydr.
Polym.46 (2001) 275-285. [Back]
H. K. Christenson, Per M. Claesson,
Direct measurements of the force between hydrophobic surfaces
in water, Adv. Colloid Interface Sci.91 (2001) 391-436. [Back]
M. Marcotte, A. R. T. Hoshahili and
H. S. Ramaswamy, Rheological properties of selected hydrocolloids
as a function of concentration and temperature, Food
Research Int.34 (2001) 695-703. [Back]
V. H. Segtnan, Š.Šašic,
T. Isaksson and Y. Ozaki, Studies on the structure of water
using two-dimensional near-infrared correlation spectroscopy
and principal component analysis, Anal.Chem.73 (2001) 3153-3161. [Back]
E. R. Batista, S. S. Xantheas and H.
Jonsson, Molecular multipole moments of water molecules
in ice Ih, J. Chem. Phys.109 (1998) 4546-4551.
[Back]
N. Yoshii, S. Miura and S. Okazaki,
A molecular dynamics study of dielectric constant of water
from ambient to sub-and supercritical conditions using a
fluctuating-charge potential model, Chem. Phys. Lett.345 (2001) 195-200 [Back, 2].
V. I. Gaiduk and J. K. Vij, The
concept of two stochastic processes in liquid water and
analytical theory of the complex permittivity in the range
0 - 1000 cm-1, Phys. Chem. Chem. Phys. 3 (2001) 5173-5181. [Back, 2]
(a) V. V. Yaminsky and E. A. Vogler,
Hydrophobic hydration, Curr. Opin. Colloid Interface
Sci.6 (2001) 342-349; (b) B. Widom,
P. Bhimalapuram and K. Koga, The hydrophobic effect, Phys.
Chem. Chem. Phys.5 (2003) 3085-3093
(G. Graziano, Comment on "The hydrophobic effect" by B.
Widom,
P. Bhimalapuram and K. Koga, Phys. Chem. Chem. Phys., 2003,
5, 3085, Phys. Chem. Chem. Phys. 6 (2004) 4527-4528.) (c) D. Chandler, Interfaces and the driving
force of hydrophobic assembly, Nature437 (2005) 640-647. [Back]
D. Kivelson and G. Tarjus, H2O
below 277 K: A novel picture, J. Phys. Chem. B105 (2001) 6620-6627. [Back]
J. L. Green, D. J. Durben, G. H. Wolf
and C. A. Angell, Water and solutions at negative pressures:
Raman spectroscopic study to -80 Megapascals, Science249 (1990) 649-652. [Back]
A. Dondos and D. Papanagopoulos, Difference
between the dynamic and static behaviour of polymers in
dilute solutions: 1. The critical concentration c**, Polymer36 (1995) 365-368. D. Papanagopoulos and
A. Dondos, Difference between the dynamic and static behaviour
of polymers in dilute solutions: 2. The critical concentration
c*, Polymer36 (1995) 369-372.
[Back]
V. E. Petrenko, M. L. Dubova, Y. M.
Kessler and M. Y. Perova, Water in computer experiment:
Contradiction in parameterization of potentials, Russ.
J. Phys. Chem.74 (2000) 1777-1781.
[Back]
H. Babin and E. Dickinson, Influence
of transglutaminase treatment on the thermoreversible gelation
of gelatin, Food Hydrocolloids15 (2001) 271-276. [Back]
S. Janaswamy and R. Chandrasekaran,
Three-dimensional structure of the sodium salt of iota-carrageenan, Carbohydr. Res.335 (2001) 181-194.
S. Janaswamy and R. Chandrasekaran, Effect of calcium ions
on the organization of iota-carrageenan helices: an X-ray
investigation, Carbohydr. Res.337 (2002) 523-535. [Back, 2]
R. Chandrasekaran, W. Bian and K. Okuyama,
Three-dimensional structure of guaran, Carbohydr. Res.312 (1998) 219-224. (Note that the structure
given in 'R. Chandrasekaran, A. Radha and K. Okuyama, Morphology
of galactomannans: an X-ray structure analysis of guaran, Carbohydr. Res.306 (1998) 243-255'
is wrong). [Back]
J. L. Atwood, L. J. Barbour, T. J. Ness,
C. L. Raston and P. L. Raston, A well-resolved ice-like
(H2O)8 cluster in an organic supramolecular
complex, J. Am. Chem. Soc.123 (2001) 7192-7193. [Back]
A. A. Zavitsas, Properties of water
solutions of electrolytes and nonelectrolytes, J. Phys.
Chem. B105 (2001) 7805-7815. [Back, 2, 3, 4] [Back to Top ]
S. V. Schevkunov and A. Vegiri, Electric
field induced transitions in water clusters, J. Mol.
Struct. (Theochem)593 (2002) 19-32.
[Back]
S. Kobe, G. Drazic, P. J. McGuiness
and J. Strazisar, The influence of the magnetic field on
the crystallisation of calcium carbonate and the testing
of a magnetic water-treatment device, J. Magn. Magn. Mater.236 (2001) 71-76. S. Kobe,
G. Drazic, A. C. Cefalas, E. Sarantopoulou and J. Strazisar,
Nucleation and crystallization of CaCO3 in applied
magnetic fields, Cryst. Eng.5 (2002) 243-253. [Back]
A. Tongraar and B. M. Rode, The role
of non-additive contributions on the hydration shell structure
of Mg2+ studied by Born-Oppenheimer ab initio
quantum mechanical/molecular mechanical molecular dynamics
simulation, Chem. Phys. Lett.346 (2001) 485-491. [Back, 2]
H. A. Stern, F. Rittner, B. J. Berne
and R. A. Friesner, Combined fluctuating charge and polarizable
dipole models: Application to a five-site water potential
function, J. Chem. Phys.115 (2001)
2237-2251. [Back]
(a) IFST,
Dietary fibre, Food Science & Technology15(3) (2001) 34-37; (b) The definition of dietary fiber, Cereal
Foods World (March, 2001) 112-136. (c) J. W. DeVries,
On defining dietary fibre, Proc. Nutr. Soc.62 (2003) 37-43. [Back]
R.Hoover, Composition, molecular structure,
and physicochemical properties of tuber and root starches:
a review, Carbohydrate Polymer45 (2001) 253-267. [Back]
C. Gabrielli, R. Jaouhari, G. Maurin
and M. Keddam, Magnetic water treatment for scale prevention, Wat. Res. 35 (2001) 3249-3259.
[Back]
(a) J-Y. Li and A-I. Yeh, Relationships
between thermal, rheological characteristics and swelling
power for various starches, J. Food Engineering50 (2001) 141-148. (b) N. Singh, J. Singh,
L. Kaur, N. Singh Sodhi and B. Singh Gill, Morphological,
thermal and rheological properties of starches from different
botanical sources, Food Chem.81 (2003) 219-231. [Back]
A. R. Henn and W. Kauzmann, Equation
of state of a random network, continuum model of liquid
water, J. Phys. Chem.93 (1989)
3770-3783. [Back, 2]
E. G. Ponyatovsky, V. V. Sinitsyn and
T. A. Pozdnyakova, The metastable T-P phase diagram and
anomalous thermodynamic properties of supercooled water, J. Chem. Phys. 109 (1998) 2413-2421.
V. V. Sinitsyn, E. G. Ponyatovsky, A. I. Kolesnikov, U.
Dahlborg and M. Calvo-Dahlborg, Thermodynamic properties
and structural features of water at normal and high pressures, Solid State Ionics145 (2001)
415-420. [Back]
R. Parker and S. G. Ring, Aspects of
the physical chemistry of starch, J. Cereal Sci.34 (2001) 1-17. [Back]
H. Walker, D. E. Brooks and P. A. Srere
(Ed) Microcompartmentation and phase separation in cytoplasm, Int. Rev. Cytology192 (2000)
pp. i-xvi, 1-392 (Academic Press, San Diego). [Back]
K. E. Zachariassen and E. Kristiansen,
Ice nucleation and antinucleation in nature, Cryobiology41 (2000) 257-179. [Back]
N. Goldman, R. S. Fellers, C. Leforestier,
R. J. Saykally, Water dimers in the atmosphere: Equilibrium
constant for water dimerization from the VRT(ASP-W) potential
surface, J. Phys Chem. A105 (2001) 515-519 [Back]
J. H. Morais-Cabral, Y. Zhou and R.
MacKinnon, Energetic optimization of ion conduction rate
by the K+ selectivity filter, Nature414 (2001) 37-42. Y. Zhou, J. H. Morais-Cabral
and R. MacKinnon, Chemistry of ion coordination and hydration
revealed by a K+ channel-Fab complex at 2.0 Å
resolution, Nature414 (2001)
43-48. [Back]
V. S. Langford, A. J. McKinley and
T. I. Quickenden, Temperature dependence of the visible-near-infrared
absorption spectrum of liquid water, J. Phys. Chem.
A105 (2001) 8916-8921. [Back, 2, 3]
A. Bakk and J. S. Høye, Microscopic
argument for the anomalous hydration heat capacity increment
upon solvation of apolar substances, Physica A 303 (2002) 286-294. [Back]
P. Schrade, H. Klein, I. Egry, Z. Ademovic
and D. Klee, Hydrophobic volume effects in albumin solutions, J. Colloid Interface Sci. 234 (2001) 445-447. [Back, 2]
G. V. Andrievsky,V. K. Klochkov, E.
L. Karyakina and N. O. Mchedlov-Petrossyan, Studies of aqueous
colloidal solutions of fullerene C60 by electron
microscopy, Chem. Phys. Lett.300 (1999) 392-396. [Back, 2]
(a) S. Samal and K. E. Geckeler, Unexpected
solute aggregation in water on dilution, Chem. Commun.21 (2001) 2224-2225. This paper is criticized by (b) F. Hallwass, M. Engelsberg and A. M. Simas, Lack of evidence of dilution history-dependence upon solute aggregation in water. A nuclear magnetic resonance determination of self-diffusion
coefficients, Chem. Commun. (2002) 2530-2531, but some new work by Luc Montagnier [1602] reinforces the unexpected dilution aspect of this work. [Back]
G. C. León, S. Rodriguez Romo
and V. Tchijov, Thermodynamics of high-pressure ice polymorphs:
ice II, J. Phys. Chem. Solids63 (2002)
843-851 [Back]
N. Muller, Is there a region of highly
structured water around a nonpolar solute molecule? J.
Solution Chem.17 (1988) 661-672.
[Back, 2, 3]
P. M. Wiggins, High and low density
intracellular water, Cell. Mol. Biol.47 (2001) 735-744. [Back, 2, 3, 4]
K. D. Collins, Charge density-dependent
strength of hydration and biological structure, Biophys.
J.72 (1997) 65-76. [Back]
P. J. Merta, G. D. Fullerton and I.
L. Cameron, Characterization of water in unfertilized and
fertilized sea urchin eggs, J. Cell Physiol.127 (1986) 439-447. [Back, 2]
M. Sola-Penna and J. R. Meyer-Fernandez,
Stabilization against thermal inactivation promoted by sugars
on enzyme structure and function: Why is trehalose more
effective than other sugars? Arch. Biochem. Biophys.360 (1998) 10-14. [Back, 2, 3]
R. H. Kelly and P. H. Yancey, High contents
of trimethylamine oxide correlating with depth in deep-sea
teleost fishes, skates and decapod crustaceans, Biol.
Bull.196 (1999) 18-25. [Back, 2]
M. Lever, J. W. Blunt and R. G. A. R.
Maclagan, Some ways of looking at compensatory kosmotropes
and different water environments, Comp. Biochem. Physiol.
A 130 (2001)
471-486. [Back, 2]
E. A. Galinski, M. Stein, B. Amendt
and M. Kinder, The kosmotropic (structure-forming) effect
of compensatory solutes, Comp. Biochem. Physiol. A 117A (1997) 357-365. [Back, 2]
J. R. De Xammar Oro, Role of co-solute
in biomolecular stability: glucose, urea and water structure, J. Biol. Phys.27 (2001) 73-79.
[Back]
C. Branca, S. Magazù, F. Migliardo,
P. Migliardo, Destructuring effect of trehalose on the tetrahedral
network of water: a Raman and neutron diffraction comparison, Physica A304 (2002) 314-318.
[Back]
M. C. R. Symons, Water structure, unique
but not anomalous, Phil. Trans. R. Soc. Lond. A359 (2001) 1631-1646. [Back]
C. Clasen and W. -M. Kulicke, Determination
of viscoelastic and rheo-optical material functions of water-soluble
cellulose derivatives, Prog. Polym. Sci.26 (2001) 1839-1919. [Back]
P. Zugenmaier, Conformation and packing
of various crystalline cellulose fibers, Prog. Polym.
Sci.26 (2001) 1341-1417. [Back]
J. P. K. Doye and D. J. Wales, Polytetrahedral
clusters, Phys. Rev. Lett.86 (2001) 5719-5722. [Back]
D.E. Dunstan, Y. Chen, M. -L. Liao,
R. Salvatore, D. V. Boger and M. Prica, Structure and rheology
of the k-carrageenan/locust bean gum gels, Food Hydrocolloids15 (2001) 475-484. [Back]
C. L. O. Petkowicz, F. Reicher and K.
Mazeau, Conformational analysis of galactomannans: from
oligomeric segments to polymeric chains, Carbohydr.
Polym. 37 (1998) 25-39. [Back, 2, 3]
R. Falshaw, H. J. Bixler and K. Johndro,
Structure and performance of commercial kappa-2 carrageenan
extracts I. Structure analysis, Food Hydrocolloids15 (2001) 441-452. [Back]
U. Lehmann and F. Robin, Slowly digestible starch - its structure and health implications: a review, Trends Food Sci. Technol.18 (2007) 346-355.
[Back]
A. V. Kondrachuk, V. V. Krasnoholovets,
A. I. Ovcharenko and E. D. Chesnokov, Determination of the
water structuring by the pulsed NMR method, Khim. Fiz.12 (1993) 1006-1010; translated in Sov.
Jnl. Chem. Phys.12 (1994) 1485-1492.
[Back, 2 , 3, 4]
J. P. K. Doye, D. J. Wales and S. I.
Simdyankin, Global optimization and the energy landscapes
of Dzugutov clusters, Faraday Disc.118 (2001) 159-170. [Back, 2]
T. Hozumi, A. Saito, S. Okawa and T.
Matsui, Freezing phenomena of supercooled water under impacts
of ultrasonic waves, Int. J. Refrigeration25 (2002) 948-953. [Back]
A. A. Shibkov, Yu. I. Golovin, M. A.
Zheltov, A. A. Korolev and A. A. Leonov, In situ monitoring
of growth of ice from supercooled water by a new electromagnetic
method, J. Cryst. Growth236 (2002) 434-440. [Back]
X.-B. Wang, X. Yang, J. B. Nicholas
and L.-S. Wang, Bulk-like features in the photoemission
spectra of hydrated doubly charged anion clusters, Science294 (2001) 1322-1325. [Back]
T. Nakai, S. Sawamura and Y. Taniguchi,
Effect of pressure on the viscosity of aqueous cesium chloride
solution at 25 °C, J. Mol. Liq.65/66 (1995) 365-368. [Back]
R. A. Goodlad and H. N. Englyst, Redefining
dietary fibre: potentially a recipe for disaster, Lancet358 (2001) 1833-1834. [Back] [Back to Top ]