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 Grand canonical Monte Carlo simulation of capillary condensation in nanoscale contacts of two solid bodies
Seonmin Kim

Grand canonical Monte Carlo simulation of capillary condensation in nanoscale contacts of two solid bodies

Objective
Investigation of effects of nanoscale geometries on capillary condensation by grand canonical Monte Carlo simulation.

Methods
Simulate the gas-liquid phase transition on the surfaces of titania nanoparticles using Fortran-based program.

 

   

Seonmin Kim

Joongjin Han

ksunmin@wam.umd.edu
Ehrman Research Group
(See also: "Effects of Titania (TiO2) Nanoparticles
Structure on Its Photocatalytic Activity"
)

View another ePoster:

Chemical and Biololecular Engineering

Breger, Joyce
Castellanos, Patricia

Charrouf, Marwan
Choi, Jonghoon
Cipriano, Bani
Dutta, Bhaskar
Dwivedi, Vivek
Falco, Erin
Fang, Xin
Gonzales, Patricia
Han, Joongjin
Huang, Kuo-Cheng (faculty research assistant)
Jung, Yunju
Ketner, Aimee
Kim, Seonmin
Lee, Seungchan
Legkodimova, Lucy (undergraduate)
Lewandowski, Angela
Sadoff, Hillary (undergraduate)
Wang, Quanzeng
Ye, Yuesheng
Yoon, Diana

Bioengineering Graduate Program

Hebert, Colin
Lee, Susan

Luo, Xiaolong

 

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