168
4 The Dielectric Properties and Dynamic Structure of Water and Ice
28. J. Frenkel, Continuity of the solid and the liquid states. Nature 136, 167–168 (1935)
29. J. A. Pople, Molecular association in liquids. A theory of structure of water. Proc. Roy. Soc.
A205, 163–168 (1951)
30. H.S. Frank, Properties of water and Ice. Proc. R. Soc. Lond. A 247, 481–492 (1958)
31. T.A. Litovitz, C.M. Davis, Structural and shear relaxation in liquids, in Physical Acoustics, ed.
by W.P. Mason, vol. 2A (Academic, New York), pp. 281–349 (1965)
32. M.S. Jhon, H. Eyring, Liquid theory and the structure of water. Ann. Rev. Phys. Chem. 27,
45–57 (1976)
33. D. Chandler, Structure of molecular liquids. Ann. Rev. Phys. Chern. 29, 441–71 (1978)
34. F.H. Stillinger, T.A. Weber, Hidden structure in liquids. Phys. Rev. A. 25, 978–989 (1982)
35. J. Higo, M. Sasai, H. Shirai, H. Nakamura, T. Kugimiya, Large vortex-like structure of dipole
field in computer models of liquid water and dipole-bridge between biomolecules. PNAS 98,
5961–5964 (2001)
36. G.G. Malenkov, Structure and dynamics of liquid water. J. Struct. Chem. 47, 1–31 (2006)
37. M. Eigen, L. De Maeyer, Untersuchungen über die Kinetik der Neutralisation. Z. Elektrochem.
59, 986–993 (1955)
38. A. Taschin, P. Bartolini, R. Eramo, R. Righini, R. Torre, Evidence of two distinct local structures
of water from ambient to supercooled conditions. Nat. Commun. 4, 2401–8 (2013)
39. C. Huang, K.T. Wikfeldt, T. Tokushima, D. Nordlund, Y. Harada, U. Bergmann, M. Niebuhr,
T.M. Weiss, Y. Horikawa, M. Leetmaa, M.P. Ljungberg, O. Takahashi, A. Lenz, L. Ojamäe,
A.P. Lyubartsev, S. Shin, L.G.M. Pettersson, A. Nilsson, The inhomogeneous structure of water
at ambient conditions. PNAS 106, 15214–15218 (2009)
40. S. Woutersen, U. Emmerichs, H.J. Bakker, Femtosecond Mid-IR pump-probe spectroscopy of
liquid water: evidence for a two-component structure. Science 278, 658–660 (1997)
41. J.K. Holt, H.G. Park, Y. Wang, M. Stadermann, A.B. Artyukhin, C.P. Grigoropoulos, A. Noy,
O. Bakajin, Fast mass transport through Sub-2-Nanometer carbon nanotubes. Science. 312,
1034–1037 (2006)
42. V.G. Artemov, E. Uykur, P.O. Kapralov, A. Kiselev, K. Stevenson, H. Ouerdane, M. Dressel,
Anomalously high proton conduction of interfacial water. J. Phys. Chem. Lett. 11, 3623–3628
(2020)
43. W. Armstrong, Electrical phenomena. The electrical. J. Phys. Chem. Lett. 10, 154–155 (1893)
44. E.C. Fuchs, Can a century old experiment reveal hidden properties of water? Water 2, 381–410
(2010)
45. A. Botti, F. Bruni, S. Imberti, M.A. Ricci, A.K. Soper, Ions in water: the microscopic structure
of a concentrated HCl solution. J. Chem. Phys. 121, 7840–7848 (2004)
46. J. Ditkovich, D. Pines, E. Pines, Controlling reactivity by remote protonation of a basic side
group in a bifunctional photoacid. Phys. Chem. Chem. Phys. 18, 16106–16115 (2016)
47. C. Bai, J. Herzfeld, Special Pairs are decisive in the autoionization and recombination of water.
J. Phys. Chem. B. 121, 4213–4219 (2017)
48. V.G. Artemov, A.A. Volkov, A.V. Pronin, Electrical properties of water: a new insight. Biophysics 59, 520–523 (2014)
49. L.D. Landau, E.M. Lifshitz, Physical Kinetics (Pergamon Press, New York, 1981)
50. N.B. Vargaftik, B.N. Volkov, L.D. Voljak, International tables of the surface tension of water.
J. Phys. Chem. Ref. Data 12, 817–820 (1983)
51. V.E. Vinogradov, Depression of the cavitation centers in water under pulsed tension conditions.
Tech. Phys. Lett. 35, 54–56 (2009)
52. L. Fumagalli, A. Esfandiar, R. Fabregas, S. Hu, P. Ares, A. Janardanan, Q. Yang, B. Radha, T.
Taniguchi, K. Watanabe, G. Gomila, K.S. Novoselov, A.K. Geim, Anomalously low dielectric
constant of confined water. Science 360, 1339–1342 (2018)
53. T. Gaudin, H. Ma, A molecular contact theory for simulating polarization: application to dielectric constant prediction. Phys. Chem. Chem. Phys. 21, 14846–14857 (2019)
54. A. von Hippel, The dielectric relaxation spectra of water, Ice, and aqueous solutions, and their
interpret at ion 1, critical survey of the status-quo for water. IEEE Tnans. Electr. Insul. 23,
801–816 (1988)
4 The Dielectric Properties and Dynamic Structure of Water and Ice
28. J. Frenkel, Continuity of the solid and the liquid states. Nature 136, 167–168 (1935)
29. J. A. Pople, Molecular association in liquids. A theory of structure of water. Proc. Roy. Soc.
A205, 163–168 (1951)
30. H.S. Frank, Properties of water and Ice. Proc. R. Soc. Lond. A 247, 481–492 (1958)
31. T.A. Litovitz, C.M. Davis, Structural and shear relaxation in liquids, in Physical Acoustics, ed.
by W.P. Mason, vol. 2A (Academic, New York), pp. 281–349 (1965)
32. M.S. Jhon, H. Eyring, Liquid theory and the structure of water. Ann. Rev. Phys. Chem. 27,
45–57 (1976)
33. D. Chandler, Structure of molecular liquids. Ann. Rev. Phys. Chern. 29, 441–71 (1978)
34. F.H. Stillinger, T.A. Weber, Hidden structure in liquids. Phys. Rev. A. 25, 978–989 (1982)
35. J. Higo, M. Sasai, H. Shirai, H. Nakamura, T. Kugimiya, Large vortex-like structure of dipole
field in computer models of liquid water and dipole-bridge between biomolecules. PNAS 98,
5961–5964 (2001)
36. G.G. Malenkov, Structure and dynamics of liquid water. J. Struct. Chem. 47, 1–31 (2006)
37. M. Eigen, L. De Maeyer, Untersuchungen über die Kinetik der Neutralisation. Z. Elektrochem.
59, 986–993 (1955)
38. A. Taschin, P. Bartolini, R. Eramo, R. Righini, R. Torre, Evidence of two distinct local structures
of water from ambient to supercooled conditions. Nat. Commun. 4, 2401–8 (2013)
39. C. Huang, K.T. Wikfeldt, T. Tokushima, D. Nordlund, Y. Harada, U. Bergmann, M. Niebuhr,
T.M. Weiss, Y. Horikawa, M. Leetmaa, M.P. Ljungberg, O. Takahashi, A. Lenz, L. Ojamäe,
A.P. Lyubartsev, S. Shin, L.G.M. Pettersson, A. Nilsson, The inhomogeneous structure of water
at ambient conditions. PNAS 106, 15214–15218 (2009)
40. S. Woutersen, U. Emmerichs, H.J. Bakker, Femtosecond Mid-IR pump-probe spectroscopy of
liquid water: evidence for a two-component structure. Science 278, 658–660 (1997)
41. J.K. Holt, H.G. Park, Y. Wang, M. Stadermann, A.B. Artyukhin, C.P. Grigoropoulos, A. Noy,
O. Bakajin, Fast mass transport through Sub-2-Nanometer carbon nanotubes. Science. 312,
1034–1037 (2006)
42. V.G. Artemov, E. Uykur, P.O. Kapralov, A. Kiselev, K. Stevenson, H. Ouerdane, M. Dressel,
Anomalously high proton conduction of interfacial water. J. Phys. Chem. Lett. 11, 3623–3628
(2020)
43. W. Armstrong, Electrical phenomena. The electrical. J. Phys. Chem. Lett. 10, 154–155 (1893)
44. E.C. Fuchs, Can a century old experiment reveal hidden properties of water? Water 2, 381–410
(2010)
45. A. Botti, F. Bruni, S. Imberti, M.A. Ricci, A.K. Soper, Ions in water: the microscopic structure
of a concentrated HCl solution. J. Chem. Phys. 121, 7840–7848 (2004)
46. J. Ditkovich, D. Pines, E. Pines, Controlling reactivity by remote protonation of a basic side
group in a bifunctional photoacid. Phys. Chem. Chem. Phys. 18, 16106–16115 (2016)
47. C. Bai, J. Herzfeld, Special Pairs are decisive in the autoionization and recombination of water.
J. Phys. Chem. B. 121, 4213–4219 (2017)
48. V.G. Artemov, A.A. Volkov, A.V. Pronin, Electrical properties of water: a new insight. Biophysics 59, 520–523 (2014)
49. L.D. Landau, E.M. Lifshitz, Physical Kinetics (Pergamon Press, New York, 1981)
50. N.B. Vargaftik, B.N. Volkov, L.D. Voljak, International tables of the surface tension of water.
J. Phys. Chem. Ref. Data 12, 817–820 (1983)
51. V.E. Vinogradov, Depression of the cavitation centers in water under pulsed tension conditions.
Tech. Phys. Lett. 35, 54–56 (2009)
52. L. Fumagalli, A. Esfandiar, R. Fabregas, S. Hu, P. Ares, A. Janardanan, Q. Yang, B. Radha, T.
Taniguchi, K. Watanabe, G. Gomila, K.S. Novoselov, A.K. Geim, Anomalously low dielectric
constant of confined water. Science 360, 1339–1342 (2018)
53. T. Gaudin, H. Ma, A molecular contact theory for simulating polarization: application to dielectric constant prediction. Phys. Chem. Chem. Phys. 21, 14846–14857 (2019)
54. A. von Hippel, The dielectric relaxation spectra of water, Ice, and aqueous solutions, and their
interpret at ion 1, critical survey of the status-quo for water. IEEE Tnans. Electr. Insul. 23,
801–816 (1988)
