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2005 | 3 | 1 | 139-146
Tytuł artykułu

Study of relaxation processes in monomolecular films by the step compression experiment

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Maxwell's displacement current flowing through a metal electrode/air gap/Langmuir monolayer was detected. MDC experimental results obtained during a step compression mode are presented and contrasted with the Debye-Brown rotational model. As an alternative approach a theoretical model based on an analogy with a nonideal gas of polar molecules is derived from Lagrange's equation of motion.
Wydawca

Czasopismo
Rocznik
Tom
3
Numer
1
Strony
139-146
Opis fizyczny
Daty
wydano
2005-03-01
online
2005-03-01
Twórcy
autor
  • Department of Physics, Faculty of Electrical Engineering and Information Technology, Slovak University of Technology, Ilkoviĉova 3, 812 19, Bratislava, Slovak Republic, Jan.Vajda@stuba.sk
autor
  • Department of Physics, Faculty of Electrical Engineering and Information Technology, Slovak University of Technology, Ilkoviĉova 3, 812 19, Bratislava, Slovak Republic
  • Department of Physics, Faculty of Electrical Engineering and Information Technology, Slovak University of Technology, Ilkoviĉova 3, 812 19, Bratislava, Slovak Republic
  • Department of Physics, Faculty of Electrical Engineering and Information Technology, Slovak University of Technology, Ilkoviĉova 3, 812 19, Bratislava, Slovak Republic
  • Department of Physics, Faculty of Electrical Engineering and Information Technology, Slovak University of Technology, Ilkoviĉova 3, 812 19, Bratislava, Slovak Republic
Bibliografia
  • [1] Y. Majima, M. Iwamoto: “Studies on the dynamic behaviour of fatty acid monolayers at the air-water interface by a current-measuring technique”,Japanese Journal of Applied Physics,Vol. 29(3) (1990),pp. 564–568. http://dx.doi.org/10.1143/JJAP.29.564[Crossref]
  • [2] Y. Majima, M. Iwamoto: “A new displacement current measuring system coupled with the Langmuir-film technique”,Review of Scientific Instruments,Vol. 62(9), (1991),pp. 2228–2233. http://dx.doi.org/10.1063/1.1142341[Crossref]
  • [3] M. Iwamoto, Y. Majima: “Investigation of the dynamic behavior of fatty acid monolayers at the air-water interface using a displacement current-measuring technique coupled with the Langmuir-film technique”,Journal of Chemical Physics,Vol. 94(7), (1991),pp. 5135–5142. http://dx.doi.org/10.1063/1.460551[Crossref]
  • [4] D. Baranĉok, J. Cirák, P. Tomĉík, J. Vajda: “Contactless detection of the orientation of molecules in an organic monolayer”,Physica Status Solidi,Vol. A 169, (1998),pp. 267–273. http://dx.doi.org/10.1002/(SICI)1521-396X(199810)169:2<267::AID-PSSA267>3.0.CO;2-B[Crossref]
  • [5] J. Cirák, D. Baranĉok, P. Tomĉík, J. Vajda: “Detection of change motion in a monomolecular layer at the air/water interface by displacement current technique”. In:European Conference Thin Organic Films ′7, Potsdam, Germany, 1998, University Potsdam, Potsdam, Germany, 1998, pp. 99–100.
  • [6] J. Cirák, D. Baranćok, P. Tomĉík, J. Vajda: “Displacement current across a monomolecular layer at the air/water interface”,Materials Science and Engineering, Vol. C 8–9, (1999) pp. 13–16. [Crossref]
  • [7] J. Cirák, D. Baranĉok, P. Tomĉík, M. Vanĉo: “Nanoelectric phenomena in Langmuir monolayers”,Acta Electrtechnica et Informatica, Vol. 2, (2002), pp. 6–9.
  • [8] J. Vajda, M. Weis, D. Baranĉok, J. Cirák, P. Tomĉík: “Study of molecular orientational order in the Lagmuir monolayer. Experiment and model calculation”,Applied Surface Science,Vol. 229, (2004),pp. 183–189. http://dx.doi.org/10.1016/j.apsusc.2004.01.071[Crossref]
  • [9] M. Iwamoto, C.X. Wu: “Analysis of dielectric relaxation phenomena with molecular oreientational ordering in monolayers at the liquid-air interface”,Physal Review, Vol. E 54(6), (1996), pp. 6603–6608.
  • [10] R. A. Buckingham: “The Classical Equation of State of Gaseous Helium, Neon and Argon”,Proceedings of the Royal Society of London, Vol. A 168, (1938), pp. 264–283. http://dx.doi.org/10.1098/rspa.1938.0173[Crossref]
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.-psjd-doi-10_2478_BF02476512
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