20
J. W. P. Schmelzer and C. Schick
27. Schmelzer JWP, Abyzov AS, Fokin VM, Schick C, Zanotto ED (2015a) Crystallization in glassforming liquids: maxima of nucleation, growth, and overall crystallization rates. J Non-Cryst
Solids 429:24–32
28. Schmelzer JWP, Abyzov AS (2018b) Pressure-induced crystallization of liquids: maxima of
nucleation, growth, and overall crystallization rates. Int J Appl Glass Sci 9:198–207
29. Schmelzer JWP, Abyzov AS, Fokin VM, Schick C, Zanotto ED (2015b) Crystallization in
glass-forming liquids: effects of fragility and glass transition temperature. J Non-Cryst Solids
428:68–74
30. Schmelzer JWP, Abyzov AS, Fokin VM, Schick C, Zanotto ED (2015c) Crystallization in
glass-forming liquids: effects of decoupling of diffusion and viscosity on crystal growth. J
Non-Cryst Solids 429:45–53
31. Schmelzer JWP, Abyzov AS, Baidakov VG (2017) Time of formation of the first supercritical
nucleus, time-lag, and the steady-state nucleation rate. Int J Appl Glass Sci 8:48–60
32. Zanotto ED, Mauro JC (2017) The glassy state of matter: its definition and ultimate fate. J
Non-Cryst Solids 471:490–495
33. Adrjanowicz K, Grzybowski A, Grzybowska K, Pionteck J, Paluch M (2013) Towards
better understanding crystallization of supercooled liquids under compression: isochronal
crystallization kinetics approach. Cryst Growth Des 13:4648–4654
34. Adrjanowicz K, Grzybowski A, Grzybowska K, Pionteck J, Paluch M (2014) Effect of high
pressure on crystallization kinetics of van der Waals liquid: an experimental and theoretical
study. Cryst Growth Des 14:2097–2104
35. Skripov VP, Faizullin MZ (2005) Crystal-liquid-gas phase transitions and thermodynamic
similarity. WILEY-VCH, Berlin-Weinheim
36. Schmelzer JWP, Zanotto ED, Fokin VM (2005) Pressure dependence of the viscosity. J Chem
Phys 122(1–10):074511
37. Fokin VM, Zanotto ED, Yuritsyn NS, Schmelzer JWP (2006) Homogeneous crystal nucleation
in silicate glasses: a 40 years perspective. J Non-Cryst Solids 352:2681–2714
38. Schick C, Androsch R, Schmelzer JWP (2017) Homogeneous crystal nucleation in polymers.
J Phys Condens Matter 29(1–35):453002
39. Cahn JW (1998) Reflections on diffusive interfaces and spinodal decomposition. In: Carter
WC, Johnson WC (eds) The selected works of J. W. Cahn. The Minerals, Metals, and Materials
Society, pp 1–8
40. Schmelzer JWP, Abyzov AS (2017) How do crystals nucleate and grow: Ostwald’s rule of
stages and beyond. In: Sestak J, Hubik P, Mares JJ (eds) Thermal physics and thermal analysis:
from macro to micro highlighting thermodynamics, kinetics, and nano-materials. Springer,
Cham, Switzerland, pp 195–211. ISBN 9789048131495
41. Schmelzer JWP, Boltachev GS, Baidakov VG (2006) Classical and generalized Gibbs
approaches and the properties of critical clusters in nucleation theory. J Chem Phys
124(1–17):194503
42. Schmelzer JWP (2009) Generalized Gibbs thermodynamics and nucleation-growth
phenomena. In: Rzoska S, Drozd-Rzoska A, Mazur V (eds) Proceedings of the NATO advanced
research workshop metastable systems under pressure, Odessa, Ukraine, 4–8 October 2008.
Springer, pp 389–402
43. Johari GP, Schmelzer JWP (2014) Crystal nucleation and growth in glass-forming systems:
some new results and open problems. In: Schmelzer JWP (ed) Glass: selected properties and
crystallization. de Gruyter, Berlin, pp 521–585
44. Schmelzer JWP, Fokin VM, Abyzov AS (2016) Crystallization of glass: what we know, what
we need to know. Int J Appl Glass Sci 7:253–261
45. Schick C, Höhne GWH (eds) (2011) Interplay between nucleation, crystallization, and the
glass transition. Thermochim Acta 522(Special Issue):1–220
46. Fokin VM, Kalinina AM, Filipovich VN (1981) Nucleation in silicate glasses and effect of
preliminary heat treatment on it. J Crystal Growth 52:115–121
47. Fokin VM, Abyzov AS, Zanotto ED, Cassar DR, Rodrigues AM, Schmelzer JWP (2016) Crystal
nucleation in glass-forming liquids: effect of the size of the “structural units.” J Non-Cryst
Solids 447:35–44
J. W. P. Schmelzer and C. Schick
27. Schmelzer JWP, Abyzov AS, Fokin VM, Schick C, Zanotto ED (2015a) Crystallization in glassforming liquids: maxima of nucleation, growth, and overall crystallization rates. J Non-Cryst
Solids 429:24–32
28. Schmelzer JWP, Abyzov AS (2018b) Pressure-induced crystallization of liquids: maxima of
nucleation, growth, and overall crystallization rates. Int J Appl Glass Sci 9:198–207
29. Schmelzer JWP, Abyzov AS, Fokin VM, Schick C, Zanotto ED (2015b) Crystallization in
glass-forming liquids: effects of fragility and glass transition temperature. J Non-Cryst Solids
428:68–74
30. Schmelzer JWP, Abyzov AS, Fokin VM, Schick C, Zanotto ED (2015c) Crystallization in
glass-forming liquids: effects of decoupling of diffusion and viscosity on crystal growth. J
Non-Cryst Solids 429:45–53
31. Schmelzer JWP, Abyzov AS, Baidakov VG (2017) Time of formation of the first supercritical
nucleus, time-lag, and the steady-state nucleation rate. Int J Appl Glass Sci 8:48–60
32. Zanotto ED, Mauro JC (2017) The glassy state of matter: its definition and ultimate fate. J
Non-Cryst Solids 471:490–495
33. Adrjanowicz K, Grzybowski A, Grzybowska K, Pionteck J, Paluch M (2013) Towards
better understanding crystallization of supercooled liquids under compression: isochronal
crystallization kinetics approach. Cryst Growth Des 13:4648–4654
34. Adrjanowicz K, Grzybowski A, Grzybowska K, Pionteck J, Paluch M (2014) Effect of high
pressure on crystallization kinetics of van der Waals liquid: an experimental and theoretical
study. Cryst Growth Des 14:2097–2104
35. Skripov VP, Faizullin MZ (2005) Crystal-liquid-gas phase transitions and thermodynamic
similarity. WILEY-VCH, Berlin-Weinheim
36. Schmelzer JWP, Zanotto ED, Fokin VM (2005) Pressure dependence of the viscosity. J Chem
Phys 122(1–10):074511
37. Fokin VM, Zanotto ED, Yuritsyn NS, Schmelzer JWP (2006) Homogeneous crystal nucleation
in silicate glasses: a 40 years perspective. J Non-Cryst Solids 352:2681–2714
38. Schick C, Androsch R, Schmelzer JWP (2017) Homogeneous crystal nucleation in polymers.
J Phys Condens Matter 29(1–35):453002
39. Cahn JW (1998) Reflections on diffusive interfaces and spinodal decomposition. In: Carter
WC, Johnson WC (eds) The selected works of J. W. Cahn. The Minerals, Metals, and Materials
Society, pp 1–8
40. Schmelzer JWP, Abyzov AS (2017) How do crystals nucleate and grow: Ostwald’s rule of
stages and beyond. In: Sestak J, Hubik P, Mares JJ (eds) Thermal physics and thermal analysis:
from macro to micro highlighting thermodynamics, kinetics, and nano-materials. Springer,
Cham, Switzerland, pp 195–211. ISBN 9789048131495
41. Schmelzer JWP, Boltachev GS, Baidakov VG (2006) Classical and generalized Gibbs
approaches and the properties of critical clusters in nucleation theory. J Chem Phys
124(1–17):194503
42. Schmelzer JWP (2009) Generalized Gibbs thermodynamics and nucleation-growth
phenomena. In: Rzoska S, Drozd-Rzoska A, Mazur V (eds) Proceedings of the NATO advanced
research workshop metastable systems under pressure, Odessa, Ukraine, 4–8 October 2008.
Springer, pp 389–402
43. Johari GP, Schmelzer JWP (2014) Crystal nucleation and growth in glass-forming systems:
some new results and open problems. In: Schmelzer JWP (ed) Glass: selected properties and
crystallization. de Gruyter, Berlin, pp 521–585
44. Schmelzer JWP, Fokin VM, Abyzov AS (2016) Crystallization of glass: what we know, what
we need to know. Int J Appl Glass Sci 7:253–261
45. Schick C, Höhne GWH (eds) (2011) Interplay between nucleation, crystallization, and the
glass transition. Thermochim Acta 522(Special Issue):1–220
46. Fokin VM, Kalinina AM, Filipovich VN (1981) Nucleation in silicate glasses and effect of
preliminary heat treatment on it. J Crystal Growth 52:115–121
47. Fokin VM, Abyzov AS, Zanotto ED, Cassar DR, Rodrigues AM, Schmelzer JWP (2016) Crystal
nucleation in glass-forming liquids: effect of the size of the “structural units.” J Non-Cryst
Solids 447:35–44
