INTERACTION FREE-ENERGY BETWEEN PLANAR WALLS IN DENSE FLUIDS - AN ORNSTEIN-ZERNIKE APPROACH WITH RESULTS FOR HARD-SPHERE, LENNARD-JONES, AND DIPOLAR SYSTEMS
被引:76
作者:
ATTARD, P
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机构:
UNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADAUNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADA
ATTARD, P
[1
]
BERARD, DR
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h-index: 0
机构:
UNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADAUNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADA
BERARD, DR
[1
]
URSENBACH, CP
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机构:
UNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADAUNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADA
URSENBACH, CP
[1
]
PATEY, GN
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h-index: 0
机构:
UNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADAUNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADA
PATEY, GN
[1
]
机构:
[1] UNIV BRITISH COLUMBIA, DEPT CHEM, VANCOUVER V6T 1Z1, BC, CANADA
来源:
PHYSICAL REVIEW A
|
1991年
/
44卷
/
12期
关键词:
D O I:
10.1103/PhysRevA.44.8224
中图分类号:
O43 [光学];
学科分类号:
070207 ;
0803 ;
摘要:
The interaction free energy per unit area between planar walls is given as a convolution of wall-solvent pair-correlation functions. This result, derived from the large radius limit of the macrosphere-solvent Ornstein-Zernike equations, and from the hypernetted-chain closure, provides a statistical-mechanical basis for the Derjaguin approximation, and is both generally applicable and computationally tractable. It is found that the interaction between hard walls in a hard-sphere fluid is oscillatory, and in good agreement with simulations. The van der Waals attraction emerges from asymptotic analyses of Lennard-Jones and dipolar fluids, and the full expression allows calculation of this quantity down to molecular separations. This is demonstrated by numerical results for dipolar fluids.