The Nanoscale Wetting Parameter and Its Role in Interfacial Phenomena: Phase Transitions in Nanopores

Author:

An Rong12ORCID,Addington Cody K.13,Long Yun14,Rotnicki Konrad5,Śliwinska-Bartkowiak Małgorzata5ORCID,Thommes Matthias6ORCID,Gubbins Keith E.1ORCID

Affiliation:

1. Department of Chemical & Biomolecular Engineering, North Carolina State University, 911 Partners’ Way, Raleigh, North Carolina 27695-7905, United States

2. School of Materials Science and Engineering/Herbert Gleiter Institute of Nanoscience, Nanjing University of Science and Technology, Nanjing 210094, China

3. U.S. E.P.A., Center for Computational Toxicology & Exposure, Office of Research & Development, Research Triangle Park, North Carolina 27711, United States

4. College of Computing, Georgia Institute of Technology, 801 Atlantic Drive, Atlanta, Georgia 30318, United States

5. Faculty of Physics, Adam Mickiewicz University, Umultowska 85, Poznan 61-614, Poland

6. Department of Chemical & Bioengineering, Friedrich-Alexander Universitaet Erlangen-Nurernberg, Erlangen 91058, Germany

Funder

China Postdoctoral Science Foundation

National Science Foundation

National Natural Science Foundation of China

Ministerstwo Nauki i Szkolnictwa Wyzszego

Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) in the Collaborative Research Center (CRC)/Sonderforschungsbereich (SFB) 1452

Publisher

American Chemical Society (ACS)

Subject

Electrochemistry,Spectroscopy,Surfaces and Interfaces,Condensed Matter Physics,General Materials Science

Reference73 articles.

1. III. An essay on the cohesion of fluids

2. A molecular dynamics study of liquid drops

3. Gray, C. G.; Gubbins, K. E.; Joslin, C. G. Theory of molecular fluids: 2. Applications. Oxford University Press: Oxford. 2011; pp 733–734, 914–916.

4. Thermodynamics of confined nano-phases

5. Experimental studies on the applicability of the Kelvin equation to highly curved concave menisci

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