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For: Phillips LF. Gaussian Local Modes of a Liquid Interface. J Phys Chem B 2001. [DOI: 10.1021/jp012367b] [Citation(s) in RCA: 11] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [What about the content of this article? (0)] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/29/2022]
Number Cited by Other Article(s)
1
Phillips LF, Nesbitt DJ. The surface of liquid gallium. Chem Phys Lett 2012. [DOI: 10.1016/j.cplett.2012.03.079] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/29/2022]
2
Phillips LF. Processes at the gas–liquid interface. INT REV PHYS CHEM 2011. [DOI: 10.1080/0144235x.2011.611635] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/17/2022]
3
Packwood DM, Phillips LF. A stochastic, local mode study of neon-liquid surface collision dynamics. Phys Chem Chem Phys 2011;13:762-78. [PMID: 21042647 DOI: 10.1039/c0cp00787k] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
4
A statistical approach to energy loss during gas–liquid collisions II: Neon–liquid metal collisions. Chem Phys Lett 2010. [DOI: 10.1016/j.cplett.2010.09.063] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
5
Packwood DM, Phillips LF. A Stochastic, Local Mode Treatment of High-Energy Gas−Liquid Collisions. J Phys Chem A 2009;113:7647-53. [DOI: 10.1021/jp811164u] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/29/2022]
6
Szabo TJ, Siavosh-Haghighi A, Adams JE. Energy transfer at a gas-liquid interface: kinematics in a prototypical system. J Phys Chem B 2006;110:1319-25. [PMID: 16471680 DOI: 10.1021/jp053923v] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/15/2022]
7
Phillips LF. Capillary-wave model for evaporation of a liquid. Chem Phys Lett 2005. [DOI: 10.1016/j.cplett.2005.03.091] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/29/2022]
8
Verdes C, Urbakh M, Kornyshev A. Surface tension and ion transfer across the interface of two immiscible electrolytes. Electrochem commun 2004. [DOI: 10.1016/j.elecom.2004.04.022] [Citation(s) in RCA: 12] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/26/2022]  Open
9
Phillips LF. A Geometrical Explanation for the Enhanced Small-Scale Roughness of a Liquid Surface. J Phys Chem B 2004. [DOI: 10.1021/jp036781i] [Citation(s) in RCA: 13] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/30/2022]
10
Phillips LF. A Molecular-Scale Model for the Coupling of Heat and Matter Fluxes at a Gas−Liquid Interface. J Phys Chem B 2003. [DOI: 10.1021/jp027777u] [Citation(s) in RCA: 11] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/08/2023]
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