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Correspondence

Calculation of the influence of an electric field on the free energy of formation of a nucleus

Pages 817-819 | Received 14 Oct 1976, Published online: 13 Sep 2006

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Dmitrii N. Gabyshev, Alexander A. Fedorets & Otto Klemm. (2020) Condensational growth of water droplets in an external electric field at different temperatures. Aerosol Science and Technology 54:12, pages 1556-1566.
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E. Gattef & Y. Dimitriev. (1981) Nucleation theory of threshold switching in vanadate–glass devices. Philosophical Magazine B 43:2, pages 333-343.
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E. Gattef & Y. Dimitriev. (1979) Reversible monopolar switching in vanadium-tellurite glass threshold devices. Philosophical Magazine B 40:3, pages 233-242.
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Articles from other publishers (47)

Haruhiko Koizumi & Satoshi Uda. (2022) Theoretical and Practical Studies on Effects of External Electrostatic Electric Field on Nucleation and Growth Kinetics of Protein Crystals. Progress in Crystal Growth and Characterization of Materials 68:3, pages 100568.
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D.M. Duarte, R. Richert & K. Adrjanowicz. (2021) Bimodal crystallization rate curves of a molecular liquid with Field-Induced polymorphism. Journal of Molecular Liquids 342, pages 117419.
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Ahmad Swandi, Annisa Rahman, Risky Afandi Putri, Radhiah Anggraini, Daniel Kurnia, Surjamanto Wonorahardjo & Inge Magdalena Sutjahja. (2020) Effect of Copper Electrode Geometry on Electrofreezing of the Phase-Change Material CaCl 2 ·6H 2 O . Journal of Non-Equilibrium Thermodynamics 46:2, pages 163-174.
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Daniel M. Duarte, Ranko Richert & Karolina Adrjanowicz. (2021) AC versus DC field effects on the crystallization behavior of a molecular liquid, vinyl ethylene carbonate (VEC) . Physical Chemistry Chemical Physics 23:1, pages 498-505.
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Daniel Irimia, Jenkins Jose Shirley, Anshul S. Garg, Davey P.A. Nijland, Antoine E. D. M. van der Heijden, Herman J. M. Kramer & Huseyin Burak Eral. (2020) Influence of Laser Parameters and Experimental Conditions on Nonphotochemical Laser-Induced Nucleation of Glycine Polymorphs. Crystal Growth & Design 21:1, pages 631-641.
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Daniel M. Duarte, Ranko Richert & Karolina Adrjanowicz. (2020) Watching the Polymorphic Transition from a Field-Induced to a Stable Crystal by Dielectric Techniques. Crystal Growth & Design 20:8, pages 5406-5412.
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Gyung Hyun Ryu, Neal P. Lewis, George N. Kotsonis, Jon-Paul Maria & Elizabeth C. Dickey. (2020) Crystallization behavior of amorphous BaTiO3 thin films. Journal of Materials Science 55:21, pages 8793-8801.
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Daniel M. Duarte, Ranko Richert & Karolina Adrjanowicz. (2020) Frequency of the AC Electric Field Determines How a Molecular Liquid Crystallizes. The Journal of Physical Chemistry Letters 11:10, pages 3975-3979.
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Hassan Pahlavanzadeh, Sima Hejazi & Mehrdad Manteghian. (2020) Hydrate formation under static and pulsed electric fields. Journal of Natural Gas Science and Engineering 77, pages 103232.
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Karolina Adrjanowicz & Ranko Richert. 2020. Crystallization as Studied by Broadband Dielectric Spectroscopy. Crystallization as Studied by Broadband Dielectric Spectroscopy 149 167 .
Eugene Vorobiev & Nikolai LebovkaEugene Vorobiev & Nikolai Lebovka. 2020. Processing of Foods and Biomass Feedstocks by Pulsed Electric Energy. Processing of Foods and Biomass Feedstocks by Pulsed Electric Energy 179 207 .
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Andrew J. Alexander & Philip J. Camp. (2019) Non-photochemical laser-induced nucleation. The Journal of Chemical Physics 150:4.
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K. Adrjanowicz, M. Paluch & R. Richert. (2018) Formation of new polymorphs and control of crystallization in molecular glass-formers by electric field. Physical Chemistry Chemical Physics 20:2, pages 925-931.
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Nan Jiang. (2017) Note on in situ (scanning) transmission electron microscopy study of liquid samples. Ultramicroscopy 179, pages 81-83.
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Nan Jiang. (2017) Electron Beam Effects on Liquid Specimens in (S)TEM. Microscopy and Microanalysis 23:S1, pages 864-865.
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Oleksii Parniakov, Pierre Adda, Olivier Bals, Nikolai Lebovka & Eugene Vorobiev. (2017) Effects of pulsed electric energy on sucrose nucleation in supersaturated solutions. Journal of Food Engineering 199, pages 19-26.
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V. G. Karpov, R. E. E. Maltby, I. V. Karpov & E. Yalon. (2015) Field-Induced Nucleation in the Presence of a Metal Electrode. Physical Review Applied 3:4.
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V. G. Karpov. (2014) Electrostatic Theory of Metal Whiskers. Physical Review Applied 1:4.
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Vishal Agarwal & Baron Peters. 2014. Advances in Chemical Physics: Volume 155. Advances in Chemical Physics: Volume 155 97 160 .
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Gianluca Di Profio, Mika T. Reijonen, Rocco Caliandro, Antonietta Guagliardi, Efrem Curcio & Enrico Drioli. (2013) Insights into the polymorphism of glycine: membrane crystallization in an electric field. Physical Chemistry Chemical Physics 15:23, pages 9271.
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Ivan S. Gutzow & Jürn W.P. SchmelzerIvan S. Gutzow & Jürn W. P. Schmelzer. 2013. The Vitreous State. The Vitreous State 289 331 .
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Martin R. Ward, Stephanie McHugh & Andrew J. Alexander. (2012) Non-photochemical laser-induced nucleation of supercooled glacial acetic acid. Phys. Chem. Chem. Phys. 14:1, pages 90-93.
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Martin R. Ward, Gary W. Copeland & Andrew J. Alexander. (2011) Chiral hide-and-seek: Retention of enantiomorphism in laser-induced nucleation of molten sodium chlorate. The Journal of Chemical Physics 135:11.
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Brandon C. Knott, Jerry L. LaRue, Alec M. Wodtke, Michael F. Doherty & Baron Peters. (2011) Communication: Bubbles, crystals, and laser-induced nucleation. The Journal of Chemical Physics 134:17.
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H. Koizumi, K. Fujiwara & S. Uda. (2010) Role of the Electric Double Layer in Controlling the Nucleation Rate for Tetragonal Hen Egg White Lysozyme Crystals by Application of an External Electric Field. Crystal Growth & Design 10:6, pages 2591-2595.
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Brandon C. Knott, Nathan Duff, Michael F. Doherty & Baron Peters. (2009) Estimating diffusivity along a reaction coordinate in the high friction limit: Insights on pulse times in laser-induced nucleation. The Journal of Chemical Physics 131:22.
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Martin R. Ward, Iain Ballingall, Matthew L. Costen, Kenneth G. McKendrick & Andrew J. Alexander. (2009) Nanosecond pulse width dependence of nonphotochemical laser-induced nucleation of potassium chloride. Chemical Physics Letters 481:1-3, pages 25-28.
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H. Koizumi, K. Fujiwara & S. Uda. (2009) Control of Nucleation Rate for Tetragonal Hen-Egg White Lysozyme Crystals by Application of an Electric Field with Variable Frequencies. Crystal Growth & Design 9:5, pages 2420-2424.
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Andrew J. Alexander & Philip J. Camp. (2008) Single Pulse, Single Crystal Laser-Induced Nucleation of Potassium Chloride. Crystal Growth & Design 9:2, pages 958-963.
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Neil D. Draper, Samuel F. Bakhoum, Allen E. Haddrell & George R. Agnes. (2007) Ion-Induced Nucleation in Solution :  Promotion of Solute Nucleation in Charged Levitated Droplets . Journal of the American Chemical Society 129:37, pages 11364-11377.
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Xinming Huang, Satoshi Uda & Shinji Koh. (2007) Effect of an external electric field on the crystal growth process of YBCO superconductive oxide. Journal of Crystal Growth 307:2, pages 432-439.
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Xinming Huang, Satoshi Uda, Xin Yao & Shinji Koh. (2006) In situ observation of crystal growth process of YBCO superconductive oxide with an external electric field. Journal of Crystal Growth 294:2, pages 420-426.
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Satoshi Uda, Shinji Koh & Xinming Huang. (2006) The electric field-induced transformation of the melting state of langasite from incongruent into congruent. Journal of Crystal Growth 292:1, pages 1-4.
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Yuusuke Yoshii, Michihiro Kuraoka, Kyouzo Sengoku & Tadashi Ohachi. (2002) Induction time and three-electrode current vs. voltage characteristics for electrical nucleation of concentrated solutions of sodium acetate trihydrate. Journal of Crystal Growth 237-239, pages 414-418.
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H. L. Marand, R. S. Stein & G. M. Stack. (1988) Isothermal crystallization of poly(vinylidene fluoride) in the presence of high static electric fields. I. Primary nucleation phenomenon. Journal of Polymer Science Part B: Polymer Physics 26:7, pages 1361-1383.
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