54
K. Adrjanowicz
62. Adrjanowicz K, Koperwas K, Szklarz G, Tarnacka M, Paluch M (2016) Exploring the crystallization tendency of glass-forming liquid indomethacin in the T-p plane by finding different
iso-invariant points. Cryst Growth Des 16(12):7000–7010
63. 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(5):2097–2104
64. Adrjanowicz K, Grzybowski A, Grzybowska K, Pionteck J, Paluch M (2013) Toward
better understanding crystallization of supercooled liquids under compression: isochronal
crystallization kinetics approach. Cryst Growth Des 13(11):4648–4654
65. Adrjanowicz K, Kaminski K, Paluch M, Niss K (2015) Crystallization behavior and relaxation
dynamics of supercooled S-ketoprofen and the racemic mixture along an isochrone. Cryst
Growth Des 15(7):3257–3263
66. Adrjanowicz K, Koperwas K, Tarnacka M, Grzybowska K, Niss K, Pionteck J, Paluch M (2016)
Changing the tendency of glass-forming liquid to crystallize by moving along different isolines
in the T-p phase diagram. Cryst Growth Des 16(11):6263–6268
67. Paluch M (2016) Dielectric properties of ionic liquids. Springer International Publishing
68. Zallen R (2004) The physics of amorphous solids. Wiley-VCH Verlag GmbH & Co. KGaA
69. Koperwas K, Adrjanowicz K, Wojnarowska Z, Jedrzejowska A, Knapik J, Paluch M (2016)
Glass-forming tendency of molecular liquids and the strength of the intermolecular attractions.
Sci Rep 6:36934
70. Bauer M, Elsaesser MS, Winkel K, Mayer E, Loerting T (2008) Compression-rate dependence
of the phase transition from hexagonal ice to ice II and/or ice III. Phys Rev B Condens Matter
Mater 77:220105
71. Bauer M, Winkel K, Toebbens DM, Mayer E, Loerting T (2009) Hexagonal ice transforms
at high pressures and compression rates directly into “doubly metastable” ice phases. J Chem
Phys 131:224514
72. Adrjanowicz K, Koperwas K, Paluch M (2017) Isobaric cooling or isothermal compression?
Unveiling the effect of path dependence on crystallization. Cryst Growth Des 17(6):2950–2954
73. Sharifi S, Prevosto D, Capaccioli S, Lucchesi M, Paluch M (2007) Effect of thermodynamic
history on secondary relaxation in the glassy state. J Non-Cryst Solids 7(353): 4313–4317
74. Prevosto D, Capaccioli D, Lucchesi M, Rolla PA, Paluch M, Pawlus S (2006) On the relevance
of the coupling model to experiments. Phys Rev B Condens Matter Mater Phys 73:104205
75. Mullin JW (2001) Crystallization, 4th edn. Butterworth-Heinemann
76. Jamali F, Brocks DR (1990) Clinical pharmacokinetics of ketoprofen and its enantiomers. Clin
Pharmacokinet 19:197–217
77. Adrjanowicz K, Kaminski K, Wojnarowska Z, Dulski M, Hawelek L, Pawlus S, Paluch M,
Sawicki W (2010) Dielectric relaxation and crystallization kinetics of ibuprofen at ambient
and elevated pressure. J Phys Chem B 114(19):6579–6593
78. Marciniak J, Andrzejewski M, Cai W, Katrusiak A (2014) Wallach’s rule enforced by pressure
in mandelic acid. J Phys Chem C 118(8):4309–4313
79. Rietveld IB, Barrio M, Tamarit J-L, Do B, Ceolin R (2011) Enantiomer resolution by pressure
increase: inferences from experimental and topological results for the binary enantiomer system
(R)- and (S)-mandelic acid. J Phys Chem B 115:14698–14703
80. Gonnade RG, Iwama S, Sugiwake R, Manoj K, Takahashi H, Tsue H, Tamura R (2012) Occurrence of spontaneous resolution of ketoprofen with a racemic crystal structure by simple
crystallization under nonequilibrium preferential enrichment conditions. Chem Commun
48:2791–2793
K. Adrjanowicz
62. Adrjanowicz K, Koperwas K, Szklarz G, Tarnacka M, Paluch M (2016) Exploring the crystallization tendency of glass-forming liquid indomethacin in the T-p plane by finding different
iso-invariant points. Cryst Growth Des 16(12):7000–7010
63. 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(5):2097–2104
64. Adrjanowicz K, Grzybowski A, Grzybowska K, Pionteck J, Paluch M (2013) Toward
better understanding crystallization of supercooled liquids under compression: isochronal
crystallization kinetics approach. Cryst Growth Des 13(11):4648–4654
65. Adrjanowicz K, Kaminski K, Paluch M, Niss K (2015) Crystallization behavior and relaxation
dynamics of supercooled S-ketoprofen and the racemic mixture along an isochrone. Cryst
Growth Des 15(7):3257–3263
66. Adrjanowicz K, Koperwas K, Tarnacka M, Grzybowska K, Niss K, Pionteck J, Paluch M (2016)
Changing the tendency of glass-forming liquid to crystallize by moving along different isolines
in the T-p phase diagram. Cryst Growth Des 16(11):6263–6268
67. Paluch M (2016) Dielectric properties of ionic liquids. Springer International Publishing
68. Zallen R (2004) The physics of amorphous solids. Wiley-VCH Verlag GmbH & Co. KGaA
69. Koperwas K, Adrjanowicz K, Wojnarowska Z, Jedrzejowska A, Knapik J, Paluch M (2016)
Glass-forming tendency of molecular liquids and the strength of the intermolecular attractions.
Sci Rep 6:36934
70. Bauer M, Elsaesser MS, Winkel K, Mayer E, Loerting T (2008) Compression-rate dependence
of the phase transition from hexagonal ice to ice II and/or ice III. Phys Rev B Condens Matter
Mater 77:220105
71. Bauer M, Winkel K, Toebbens DM, Mayer E, Loerting T (2009) Hexagonal ice transforms
at high pressures and compression rates directly into “doubly metastable” ice phases. J Chem
Phys 131:224514
72. Adrjanowicz K, Koperwas K, Paluch M (2017) Isobaric cooling or isothermal compression?
Unveiling the effect of path dependence on crystallization. Cryst Growth Des 17(6):2950–2954
73. Sharifi S, Prevosto D, Capaccioli S, Lucchesi M, Paluch M (2007) Effect of thermodynamic
history on secondary relaxation in the glassy state. J Non-Cryst Solids 7(353): 4313–4317
74. Prevosto D, Capaccioli D, Lucchesi M, Rolla PA, Paluch M, Pawlus S (2006) On the relevance
of the coupling model to experiments. Phys Rev B Condens Matter Mater Phys 73:104205
75. Mullin JW (2001) Crystallization, 4th edn. Butterworth-Heinemann
76. Jamali F, Brocks DR (1990) Clinical pharmacokinetics of ketoprofen and its enantiomers. Clin
Pharmacokinet 19:197–217
77. Adrjanowicz K, Kaminski K, Wojnarowska Z, Dulski M, Hawelek L, Pawlus S, Paluch M,
Sawicki W (2010) Dielectric relaxation and crystallization kinetics of ibuprofen at ambient
and elevated pressure. J Phys Chem B 114(19):6579–6593
78. Marciniak J, Andrzejewski M, Cai W, Katrusiak A (2014) Wallach’s rule enforced by pressure
in mandelic acid. J Phys Chem C 118(8):4309–4313
79. Rietveld IB, Barrio M, Tamarit J-L, Do B, Ceolin R (2011) Enantiomer resolution by pressure
increase: inferences from experimental and topological results for the binary enantiomer system
(R)- and (S)-mandelic acid. J Phys Chem B 115:14698–14703
80. Gonnade RG, Iwama S, Sugiwake R, Manoj K, Takahashi H, Tsue H, Tamura R (2012) Occurrence of spontaneous resolution of ketoprofen with a racemic crystal structure by simple
crystallization under nonequilibrium preferential enrichment conditions. Chem Commun
48:2791–2793
