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The system of carbon tetrachloride and closed carbon nanotubes analyzed by a combination of molecular simulations, analytical modeling, and adsorption calorimetry
Journal article   Peer reviewed

The system of carbon tetrachloride and closed carbon nanotubes analyzed by a combination of molecular simulations, analytical modeling, and adsorption calorimetry

Sylwester Furmaniak, Artur P. Terzyk, Gerhard Rychlicki, Marek Wiśniewski, Piotr A. Gauden, Piotr Kowalczyk, Karolina M. Werengowska and Katarzyna Dulska
Journal of Colloid and Interface Science, Vol.349(1), pp.321-330
2010
PMID: 20576274

Abstract

Adsorption Calorimetry Carbon nanotubes GCMC Modeling Molecular simulation
Using the combined techniques of molecular simulation, simple analytical modeling, and adsorption calorimetry, we propose new models describing adsorption onto closed carbon nanotubes. The models are capable of describing the adsorption isotherms and calorimetric enthalpy of carbon tetrachloride adsorption measured on three different closed carbon nanotubes. It is shown that the assumption of the presence of two types of surface centers (high- and low-energy centers) on external tube surfaces is sufficient to describe experimental adsorption and calorimetric enthalpy data.

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
2 Chemistry
2.76 2D Materials
2.76.23 Carbon Nanotubes
Web Of Science research areas
Chemistry, Physical
ESI research areas
Chemistry
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