214
5 Electrodynamics of Aqueous Media
57. A.M. Duffin, R.J. Saykally, Electrokinetic power generation from liquid water microjets. J.
Phys. Chem. C 112, 17018–17022 (2008)
58. W. Armstrong, Electrical Phenomena. The electrical. Engineer 10, 154–155 (1893)
59. E.C. Fuchs, J. Woisetschläger, K. Gatterer, E. Maier, R. Pecnik, G. Holler, H. Eisenkölbl, J.
Phys. D Appl. Phys. 40, 6112–4 (2007)
60. R.C. Ponterio, M. Pochylski, F. Aliotta, C. Vasi, M.E. Fontanella, F. Saija, Raman scattering
measurements on a floating water bridge. J. Phys. D Appl. Phys. 43, 175405–175408 (2010)
61. A. Aerov, Why the water bridge does not collapse. Phys. Rev. E. 84, 036314–4 (2011)
62. L.B. Skinner, C.J. Benmore, B. Shyam, J.K.R. Weber, J.B. Parise, Structure of the floating
water bridge and water in an electric field. PNAS 109, 16463–16468 (2012)
63. R.M. Namin, S.A. Lindi, A. Amjadi, N. Jafari, P. Irajizad, Experimental investigation of the
stability of the floating water bridge. Phys. Rev. E. 88, 033019–6 (2013)
64. A. Widom, J. Swain, J. Silverberg, S. Sivasubramanian, Y.N. Srivastava, Theory of the Maxwell
pressure tensor and the tension in a water bridge. Phys. Rev. E. 80, 016301–7 (2009)
65. F. Saija, F. Aliotta, M.E. Fontanella, M. Pochylski, G. Salvato, C. Vasi, R.C. Ponterio, Communication: an extended model of liquid bridging. J. Chem. Phys. 133, 081104–4 (2010)
66. E.C. Fuchs, B. Bitschnau, J. Woisetschläger, E. Maier, B. Beuneu, J. Teixeira, Neutron scattering
of a floating heavy water bridge. J. Phys. D. Appl. Phys. 42, 065502–4 (2009)
67. E. C. Fuchs, L. L. F. Agostinho, M. Eisenhut, and J. Woisetschläger, Mass and charge transfer
within a floating water bridge. Proc. SPIE 7376, Laser Applications in Life Sciences, 73761E
(2010)
68. L. Onsager, S.K. Kim, Wien effect in simple strong electrolytes. J. Phys. Chem. 61, 198–215
(1957)
69. R. A. Robinson, R. H. Stokes, Electrolyte Solutions. Butterworth and Co, 2nd edn. (Courier
Dover Publications 2002)
70. J.E. Desnoyers, R.E. Verrall, B.E. Conway, Electrostriction in aqueous solutions of electrolytes.
J. Chem. Phys. 43, 243–250 (1965)
71. J. Woisetschlager, K. Gatterer, E.C. Fuchs, Experiments in a floating water bridge. Exp. Fluids
48, 121–131 (2010)
72. H.A. Papazian, Correlation of surface tension between various liquids. J. Am. Chem. Soc. 93,
5634–5636 (1971)
73. J.B. Goodenough, K.-S. Park, The Li-Ion rechargeable battery: a perspective. J. Am. Chem.
Soc. 135, 1167–1176 (2013)
74. K. Chen, S. Song, F. Liua, D. Xue, Structural design of graphene for use in electrochemical
energy storage devices. Chem. Soc. Rev. 44, 6230–6257 (2015)
75. E. McCalla, A.M. Abakumov, M. Saubanére, D. Foix, E.J. Berg, G. Rousse, Visualization of
O-O peroxo-like dimers in high-capacity layered oxides for Li-ion batteries. Science 350, 1516
(2015)
76. K. Chen, D. Xue, Materials chemistry toward electrochemical energy storage. J. Mater. Chem.
A. 4, 7522 (2016)
77. M. A. Pogosova, I. V. Krasnikova, A. O. Sanin, S. A. Lipovskikh, A. A. Eliseev, A. V.
Sergeev, K. J. Stevenson, Complex investigation of water impact on Li-Ion conductivity
of Li 1.3 Al 0.3 Ti 1.7 (PO 4 ) 3 —Electrochemical, chemical, structural, and morphological aspects.
Chem. Mater. 32, 3723–3732 (2020)
78. W.J. Harrison, C.A. White, Magnetism and Electricity, 5th edn. (UK, Blackie and Son, 1898)
79. K. Kuehn, Müschenbroek’s Wonderful Bottle. A Student’s Guide Through the Great Physics
Texts, pp. 43–60 (2015)
80. G. L. Addenbrooke, A study of Franklin’s experiment on the Leyden jar with movable coatings.
Philos Mag. 6th Series. 43, 489–493 (1922)
81. L.D. Landau, E.M. Lifshitz, Electrodynamics of continuous media (Pergamon Press, New York,
1958)
82. J.E. Tibaquirá, K.D. Hristovski, P. Westerhoff, J.D. Posner, Recovery and quality of water
produced by commercial fuel cells. Int. J. Hydr. Ener. 36, 4022–4028 (2011)
83. V.G. Artemov, A. Ryzhov, E. Carlsen, P. Kapralov, H. Ouerdane, Nonrotational mechanism of
polarization in alcohols. J. Phys. Chem. B. 124, 11022–11029 (2020)
5 Electrodynamics of Aqueous Media
57. A.M. Duffin, R.J. Saykally, Electrokinetic power generation from liquid water microjets. J.
Phys. Chem. C 112, 17018–17022 (2008)
58. W. Armstrong, Electrical Phenomena. The electrical. Engineer 10, 154–155 (1893)
59. E.C. Fuchs, J. Woisetschläger, K. Gatterer, E. Maier, R. Pecnik, G. Holler, H. Eisenkölbl, J.
Phys. D Appl. Phys. 40, 6112–4 (2007)
60. R.C. Ponterio, M. Pochylski, F. Aliotta, C. Vasi, M.E. Fontanella, F. Saija, Raman scattering
measurements on a floating water bridge. J. Phys. D Appl. Phys. 43, 175405–175408 (2010)
61. A. Aerov, Why the water bridge does not collapse. Phys. Rev. E. 84, 036314–4 (2011)
62. L.B. Skinner, C.J. Benmore, B. Shyam, J.K.R. Weber, J.B. Parise, Structure of the floating
water bridge and water in an electric field. PNAS 109, 16463–16468 (2012)
63. R.M. Namin, S.A. Lindi, A. Amjadi, N. Jafari, P. Irajizad, Experimental investigation of the
stability of the floating water bridge. Phys. Rev. E. 88, 033019–6 (2013)
64. A. Widom, J. Swain, J. Silverberg, S. Sivasubramanian, Y.N. Srivastava, Theory of the Maxwell
pressure tensor and the tension in a water bridge. Phys. Rev. E. 80, 016301–7 (2009)
65. F. Saija, F. Aliotta, M.E. Fontanella, M. Pochylski, G. Salvato, C. Vasi, R.C. Ponterio, Communication: an extended model of liquid bridging. J. Chem. Phys. 133, 081104–4 (2010)
66. E.C. Fuchs, B. Bitschnau, J. Woisetschläger, E. Maier, B. Beuneu, J. Teixeira, Neutron scattering
of a floating heavy water bridge. J. Phys. D. Appl. Phys. 42, 065502–4 (2009)
67. E. C. Fuchs, L. L. F. Agostinho, M. Eisenhut, and J. Woisetschläger, Mass and charge transfer
within a floating water bridge. Proc. SPIE 7376, Laser Applications in Life Sciences, 73761E
(2010)
68. L. Onsager, S.K. Kim, Wien effect in simple strong electrolytes. J. Phys. Chem. 61, 198–215
(1957)
69. R. A. Robinson, R. H. Stokes, Electrolyte Solutions. Butterworth and Co, 2nd edn. (Courier
Dover Publications 2002)
70. J.E. Desnoyers, R.E. Verrall, B.E. Conway, Electrostriction in aqueous solutions of electrolytes.
J. Chem. Phys. 43, 243–250 (1965)
71. J. Woisetschlager, K. Gatterer, E.C. Fuchs, Experiments in a floating water bridge. Exp. Fluids
48, 121–131 (2010)
72. H.A. Papazian, Correlation of surface tension between various liquids. J. Am. Chem. Soc. 93,
5634–5636 (1971)
73. J.B. Goodenough, K.-S. Park, The Li-Ion rechargeable battery: a perspective. J. Am. Chem.
Soc. 135, 1167–1176 (2013)
74. K. Chen, S. Song, F. Liua, D. Xue, Structural design of graphene for use in electrochemical
energy storage devices. Chem. Soc. Rev. 44, 6230–6257 (2015)
75. E. McCalla, A.M. Abakumov, M. Saubanére, D. Foix, E.J. Berg, G. Rousse, Visualization of
O-O peroxo-like dimers in high-capacity layered oxides for Li-ion batteries. Science 350, 1516
(2015)
76. K. Chen, D. Xue, Materials chemistry toward electrochemical energy storage. J. Mater. Chem.
A. 4, 7522 (2016)
77. M. A. Pogosova, I. V. Krasnikova, A. O. Sanin, S. A. Lipovskikh, A. A. Eliseev, A. V.
Sergeev, K. J. Stevenson, Complex investigation of water impact on Li-Ion conductivity
of Li 1.3 Al 0.3 Ti 1.7 (PO 4 ) 3 —Electrochemical, chemical, structural, and morphological aspects.
Chem. Mater. 32, 3723–3732 (2020)
78. W.J. Harrison, C.A. White, Magnetism and Electricity, 5th edn. (UK, Blackie and Son, 1898)
79. K. Kuehn, Müschenbroek’s Wonderful Bottle. A Student’s Guide Through the Great Physics
Texts, pp. 43–60 (2015)
80. G. L. Addenbrooke, A study of Franklin’s experiment on the Leyden jar with movable coatings.
Philos Mag. 6th Series. 43, 489–493 (1922)
81. L.D. Landau, E.M. Lifshitz, Electrodynamics of continuous media (Pergamon Press, New York,
1958)
82. J.E. Tibaquirá, K.D. Hristovski, P. Westerhoff, J.D. Posner, Recovery and quality of water
produced by commercial fuel cells. Int. J. Hydr. Ener. 36, 4022–4028 (2011)
83. V.G. Artemov, A. Ryzhov, E. Carlsen, P. Kapralov, H. Ouerdane, Nonrotational mechanism of
polarization in alcohols. J. Phys. Chem. B. 124, 11022–11029 (2020)
