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41. J.G. Dash, A.W. Rempel, J.S. Wettlaufer, The physics of premelted ice and its geophysical
consequences. Rev. Mod. Phys. 78, 695–741 (2006)
42. M. Maruyama, M. Bienfait, J.G. Dash, G. Coddens, Interfacial melting of ice in graphite and
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shape study. Surf. Sci. 286, 176–181 (1993)
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(2008)
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52. R. Anderson, M. Llamedo, B. Tohidi, R.W. Burgass, Experimental measurement of methane
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53. Y. Seo, S. Lee, I. Cha, J.D. Lee, H. Lee, Phase equilibria and thermodynamic modeling of
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54. J.F. Zhang, M. Di Lorenzo, Z.J. Pan, Effect of surface energy on carbon dioxide hydrate
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55. Z.M. Aman, K. Olcott, K. Pfeiffer, E.D. Sloan, A.K. Sum, C.A. Koh, Surfactant adsorption and
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56. S.C. Hardy, Grain-boundary groove measurement of surface-tension between ice and water.
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57. R.J. Schaefer, M.E. Glicksman, J.D. Ayers, High-confidence measurement of solid-liquid
surface-energy in a pure material. Phil. Mag. 32, 725–743 (1975)
58. D. Turnbull, Formation of crystal nuclei in liquid metals. J. Appl. Phys. 21, 1022–1028 (1950)
59. W.B. Hillig, Measurement of interfacial free energy for ice/water system. J. Cryst. Growth 183,
463–468 (1998)
60. E.D. Sloan, C.A. Koh, Clathrate Hydrates of Natural Gases, 3rd edn. (CRC Press, Boca Raton,
2008)
61. E.W. Hansen, H.C. Gran, E.J. Sellevold, Heat of fusion and surface tension of solids confined
in porous materials derived from a combined use of NMR and calorimetry. J. Phys. Chem. B
101, 7027–7032 (1997)
62. H.K. Christenson, P.M. Claesson, Direct measurements of the force between hydrophobic
surfaces in water. Adv. Coll. Interface. Sci. 91, 391–436 (2001)
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109
39. J.N. Israelachvili, Intermolecular and Surface Forces, 2nd edn. (Academic Press, San Diego,
CA, 1991)
40. J.G. Dash, H. Fu, J.S. Wettlaufer, The premelting of ice and its environmental consequences.
Rep. Prog. Phys. 58, 115–167 (1995)
41. J.G. Dash, A.W. Rempel, J.S. Wettlaufer, The physics of premelted ice and its geophysical
consequences. Rev. Mod. Phys. 78, 695–741 (2006)
42. M. Maruyama, M. Bienfait, J.G. Dash, G. Coddens, Interfacial melting of ice in graphite and
talc powders. J. Cryst. Growth 118, 33–40 (1992)
43. D. Nenow, A. Trayanov, Thermodynamics of crystal-surfaces with quasi-liquid layer. J. Cryst.
Growth 79, 801–805 (1986)
44. A. Pavlovska, D. Dobrev, E. Bauer, Surface melting versus surface non-melting: an equilibrium
shape study. Surf. Sci. 286, 176–181 (1993)
45. B. Slater, A. Michaelides, Surface premelting of water ice. Nat. Rev. Chem. 3, 172–188 (2019)
46. Z.M. Aman, S.E. Joshi, E.D. Sloan, A.K. Sum, C.A. Koh, Micromechanical cohesion force
measurements to determine cyclopentane hydrate interfacial properties. J. Colloid Interface
Sci. 376, 283–288 (2012)
47. K.F. Yan, X.S. Li, Z.Y. Chen, B. Li, C.G. Xu, Molecular dynamics simulation of methane
hydrate dissociation by depressurisation. Mol. Simul. 39, 251–260 (2013)
48. L.Y. Ding, C.Y. Geng, Y.H. Zhao, X.F. He, H. Wen, Molecular dynamics simulation for surface
melting and self-preservation effect of methane hydrate. Sci. China Ser. B Chem. 51, 651–660
(2008)
49. N. Maeda, Z.M. Aman, K.A. Kozielski, C.A. Koh, E.D. Sloan, A.K. Sum, Measurements of
cohesion hysteresis between cyclopentane hydrates in liquid cyclopentane. Energy Fuels 27,
5168–5174 (2013)
50. Y.L. Chen, C.A. Helm, J.N. Israelachvili, Molecular mechanisms associated with adhesion and
contact-angle hysteresis of monolayer surfaces. J. Phys. Chem. 95, 10736–10747 (1991)
51. T. Uchida, T. Ebinuma, S. Takeya, J. Nagao, H. Narita, Effects of pore sizes on dissociation
temperatures and pressures of methane, carbon dioxide, and propane hydrates in porous media.
J. Phys. Chem. B 106, 820–826 (2002)
52. R. Anderson, M. Llamedo, B. Tohidi, R.W. Burgass, Experimental measurement of methane
and carbon dioxide clathrate hydrate equilibria in mesoporous silica. J. Phys. Chem. B 107,
3507–3514 (2003)
53. Y. Seo, S. Lee, I. Cha, J.D. Lee, H. Lee, Phase equilibria and thermodynamic modeling of
ethane and propane hydrates in porous silica gels. J. Phys. Chem. B 113, 5487–5492 (2009)
54. J.F. Zhang, M. Di Lorenzo, Z.J. Pan, Effect of surface energy on carbon dioxide hydrate
formation. J. Phys. Chem. B 116, 7296–7301 (2012)
55. Z.M. Aman, K. Olcott, K. Pfeiffer, E.D. Sloan, A.K. Sum, C.A. Koh, Surfactant adsorption and
interfacial tension investigations on cyclopentane hydrate. Langmuir 29, 2676–2682 (2013)
56. S.C. Hardy, Grain-boundary groove measurement of surface-tension between ice and water.
Phil. Mag. 35, 471–484 (1977)
57. R.J. Schaefer, M.E. Glicksman, J.D. Ayers, High-confidence measurement of solid-liquid
surface-energy in a pure material. Phil. Mag. 32, 725–743 (1975)
58. D. Turnbull, Formation of crystal nuclei in liquid metals. J. Appl. Phys. 21, 1022–1028 (1950)
59. W.B. Hillig, Measurement of interfacial free energy for ice/water system. J. Cryst. Growth 183,
463–468 (1998)
60. E.D. Sloan, C.A. Koh, Clathrate Hydrates of Natural Gases, 3rd edn. (CRC Press, Boca Raton,
2008)
61. E.W. Hansen, H.C. Gran, E.J. Sellevold, Heat of fusion and surface tension of solids confined
in porous materials derived from a combined use of NMR and calorimetry. J. Phys. Chem. B
101, 7027–7032 (1997)
62. H.K. Christenson, P.M. Claesson, Direct measurements of the force between hydrophobic
surfaces in water. Adv. Coll. Interface. Sci. 91, 391–436 (2001)
63. D.R. Lide, CRC Handbook of Chemistry and Physics, 80th edn. (CRC Press, Boca Raton,
1999–2000)
64. F. Franks, Polywater (MIT Press, 1983)
