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Dynamics in ultrathin liquid films studied by simultaneous dielectric spectroscopy (DRS) and organic molecular beam deposition (OMBD)

Authors :
Simona Capponi
Norwid-Rasmus Behrnd
Simone Napolitano
Michael Wübbenhorst
Stanisław A. Różański
Jürg Hulliger
Gaëtan Couderc
Source :
Wübbenhorst, M.; Capponi, S.; Napolitano, S.; Rozanski, S.; Couderc, G.; R Behrnd, N.; Hulliger, J. (2010). Dynamics in ultrathin liquid films studied by simultaneous dielectric spectroscopy (DRS) and organic molecular beam deposition (OMBD). European physical journal-special topics, 189(1), pp. 181-186. Les Ulis (F): EDP Sciences 10.1140/epjst/e2010-01321-1
Publication Year :
2010
Publisher :
EDP Sciences, 2010.

Abstract

Real-time dielectric relaxation spectroscopy for a molecular beam deposited glass forming liquids is proposed as a versatile approach for the study of the dynamic glass transition in geometric confinement. To achieve the highest sensitivity down to monomolecular organic layers in a wide frequency range (0.1 - 10^7 Hz) during simultaneous deposition and desorption, we have used μm spaced interdigitated electrodes under ultrahigh vacuum conditions. Experiments using glycerol deposited on fused silica at -40◦C revealed a dielectric glass transition process for a layer thickness as low as 0.7 nm. While its peak position hardly changes upon thickness reduction, a clear broadening of the relaxation peak is observed that implies an increasing heterogeneous mobility scenario for the thinnest films caused by molecules being part of a reduced (at the substrate) or enhanced (free surface) mobility layer. This finding is supported by desorption experiments that reveal a strong retardation of the desorption rate for films below 1 nm. ispartof: European Physical Journal. Special Topics vol:189 issue:1 pages:181-186 ispartof: location:Grenoble status: published

Details

Language :
English
Database :
OpenAIRE
Journal :
W&#252;bbenhorst, M.; Capponi, S.; Napolitano, S.; Rozanski, S.; Couderc, G.; R Behrnd, N.; Hulliger, J. (2010). Dynamics in ultrathin liquid films studied by simultaneous dielectric spectroscopy (DRS) and organic molecular beam deposition (OMBD). European physical journal-special topics, 189(1), pp. 181-186. Les Ulis (F): EDP Sciences 10.1140/epjst/e2010-01321-1 <http://dx.doi.org/10.1140/epjst/e2010-01321-1>
Accession number :
edsair.doi.dedup.....53cecd129944d5864a80f17850e386eb