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Original Articles

Atomistic Simulations of Rare Gas Transport through Breathable Single-wall Nanotubes with Constrictions and Knees

Pages 661-667 | Received 01 Jul 2003, Published online: 31 Jan 2007

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J. W. Kang & H. J. Hwang. (2005) An ultrathin carbon nanoribbon study as a component of nanoelectromechanical devices. Molecular Simulation 31:8, pages 561-565.
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Nasrin Torabi, Fatemeh Ebrahimi, G.R. Maktabdaran & Muhammad Sahimi. (2022) Friction versus flow enhancement in nanotube structures with heterojunctions. Journal of Molecular Liquids 365, pages 120188.
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Suresh K. Bhatia. (2016) Characterizing Structural Complexity in Disordered Carbons: From the Slit Pore to Atomistic Models. Langmuir 33:4, pages 831-847.
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Kisung Chae & Liping Huang. (2016) Computational study of pressure-driven methane transport in hierarchical nanostructured porous carbons. The Journal of Chemical Physics 144:4.
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M.R. Delfani & H.M. Shodja. (2015) An exact analysis for the hoop elasticity and pressure-induced twist of CNT-nanovessels and CNT-nanopipes. Mechanics of Materials 82, pages 47-62.
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Suresh K. Bhatia & David Nicholson. (2011) Modeling Self-Diffusion of Simple Fluids in Nanopores. The Journal of Physical Chemistry B 115:40, pages 11700-11711.
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Hassan Sabzyan & Zahra Tavangar. (2009) Characterization of the flow of the CO/CO2 gases through carbon nanotube junctions using molecular dynamic simulations. Chemical Physics 362:3, pages 120-129.
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S. K. Bhatia & D. Nicholson. (2007) Anomalous transport in molecularly confined spaces. The Journal of Chemical Physics 127:12.
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S. Jakobtorweihen, C. P. Lowe, F. J. Keil & B. Smit. (2007) Diffusion of chain molecules and mixtures in carbon nanotubes: The effect of host lattice flexibility and theory of diffusion in the Knudsen regime. The Journal of Chemical Physics 127:2.
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Suresh K. Bhatia. (2016) Influence of Adsorbate Interaction on Transport in Confined Spaces. Adsorption Science & Technology 24:2, pages 101-116.
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Anastasios I. Skoulidas, David S. Sholl & J. Karl Johnson. (2006) Adsorption and diffusion of carbon dioxide and nitrogen through single-walled carbon nanotube membranes. The Journal of Chemical Physics 124:5.
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Haibin Chen, J. Karl Johnson & David S. Sholl. (2006) Transport Diffusion of Gases Is Rapid in Flexible Carbon Nanotubes. The Journal of Physical Chemistry B 110:5, pages 1971-1975.
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Susan B. Sinnott & Narayan R. Aluru. 2006. Carbon Nanotechnology. Carbon Nanotechnology 361 488 .
Suresh K. Bhatia & David Nicholson. (2005) Transport of simple fluids in nanopores: Theory and simulation. AIChE Journal 52:1, pages 29-38.
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