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Species separation of binary colloidal mixtures in the multi-Gauss potential: Effect of depletion |
Sun Zong-Li (孙宗利)a, Kang Yan-Shuang (康艳霜)b, Kang Yan-Mei (康艳梅)c, Song Jian-Min (宋建民)b |
a Science and Technology College, North China Electric Power University, Baoding 071051, China; b College of Science, Agriculture University of Hebei, Baoding 071001, China; c University of International Relations, Beijing 100091, China |
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Abstract For the asymmetrical colloidal mixture subject to a confining potential and an external multi-Gauss potential, the separation of species is studied based on the classical density functional theory of simple fluids. The multi-Gauss potential consists of several Gauss barriers, which are distributed along the axial direction with uniform distance. The barrier width, barrier distance, and barrier height are individually adjusted to investigate their effects on the species separation. From the numerical results, it is concluded that in each condition, the competition between the external potential and the depletion potential determines the phase equilibrium and the separation. Species separation appears only in the region where the depletion is dominant. On the contrary, both species are absent in the regions where the external potential takes the absolute advantage.
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Received: 08 June 2014
Revised: 22 June 2014
Accepted manuscript online:
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PACS:
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64.75.Xc
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(Phase separation and segregation in colloidal systems)
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61.20.Gy
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(Theory and models of liquid structure)
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Fund: Project supported by the Fundamental Research Funds for the Central Universities, China (Grant No. 13MS105). |
Corresponding Authors:
Sun Zong-Li
E-mail: zongli_sun@163.com
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Cite this article:
Sun Zong-Li (孙宗利), Kang Yan-Shuang (康艳霜), Kang Yan-Mei (康艳梅), Song Jian-Min (宋建民) Species separation of binary colloidal mixtures in the multi-Gauss potential: Effect of depletion 2014 Chin. Phys. B 23 126401
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| [1] | Asakura S and Oosawa F 1954 J. Chem. Phys. 22 1255
|
|
| [2] | Vrij A 1976 Pure Appl. Chem. 48 471
|
|
| [3] | Nonner W, Catacuzzeno L and Eisenberg R S 2000 Biophys. J. 79 1976
|
|
| [4] | Hille B 2001 Ion Channels of Excitable Membranes (Sunderland: Sinauer Asc.)
|
|
| [5] | Gillespie D, Nonner W, Henderson D and Eisenberg R S 2002 Phys. Chem. Chem. Phys. 4 4763
|
|
| [6] | Roth R and Gillespie D 2005 Phys. Rev. Lett. 95 247801
|
|
| [7] | Ye X, Narayanan T, Tong P, Huang J S, Lin M Y, Carvalho B L and Fetters L J 1996 Phys. Rev. E 54 6500
|
|
| [8] | Brader J M, Dijkstra M and Evans R 2001 Phys. Rev. E 63 041405
|
|
| [9] | Louis A A, Bolhuis P G, Meijer E J and Hansen J P 2002 J. Chem. Phys. 117 1893
|
|
| [10] | Tuinier R, Rieger J and de Kruif C G 2003 Adv. Col. Int. Sci. 103 1
|
|
| [11] | Chen X, Cai J, Liu H and Hu Y 2006 Mol. Sim. 32 877
|
|
| [12] | Li Z D and Wu J Z 2007 J. Chem. Phys. 126 144904
|
|
| [13] | Bryant G, Williams S R, Qian L, Snook I K, Perez E and Pincet F 2002 Phys. Rev. E 66 060501
|
|
| [14] | You F Q, Yu Y X and Gao G H 2005 J. Phys. Chem. B 109 3512
|
|
| [15] | Yu Y X, You F Q, Tang Y P, Gao G H and Li Y G 2006 J. Phys. Chem. B 110 334
|
|
| [16] | Yu Y X and Jin L 2008 J. Chem. Phys. 128 014901
|
|
| [17] | Roth R, Evans R and Dietrich S 2000 Phys. Rev. E 62 5360
|
|
| [18] | Ashton D J, Wilding N B, Roth R and Evans R 2011 Phys. Rev. E 84 061136
|
|
| [19] | Roth R, Rauscher M and Archer A J 2009 Phys. Rev. E 80 021409
|
|
| [20] | Anil Kumar A V 2013 J. Chem. Phys. 138 154903
|
|
| [21] | Lekkerkerker H N W and Stroobats A 1993 Physica A 195 387
|
|
| [22] | Mao Y, Cates M E and Lekkerkerker H N W 1995 Physica A 222 10
|
|
| [23] | Götzelmann B, Evans R and Dietrich S 1998 Phys. Rev. E 57 6785
|
|
| [24] | Götzelmann B, Roth R, Dietrich S, Dijkstra M and Evans R 1999 Europhys. Lett. 47 398
|
|
| [25] | Roth R, Evans R and Dietrich S 2000 Phys. Rev. E 62 5360
|
|
| [26] | Méndez-Alcaraz J M and Klein R 2000 Phys. Rev. E 61 4095
|
|
| [27] | Castañeda-Priego R, Rodríguez-López A and Méndez-Alcaraz J M 2003 J. Phys.: Condens. Matter 15 S3393
|
|
| [28] | González-Mozuelos P, Méndez-Alcaraz J M and Castañeda-Priego R 2005 J. Chem. Phys. 123 214907
|
|
| [29] | Castañeda-Priego R, Rodríguez-López A and Méndez-Alcaraz J M 2006 Phys. Rev. E 73 051404
|
|
| [30] | Evans R 1979 Adv. Phys. 28 143
|
|
| [31] | Henderson D 1992 Fundamentals of Inhomogeneous Fluids (New York: Dekker)
|
|
| [32] | Hansen J P and McDonald I R 1986 Theory of Simple Liquids, 2nd edn. (New York: Academic Press)
|
|
| [33] | Sun Z L, Kang Y S, Kang Y M, Liu Z C and Ma H X 2012 Chin. Phys. B 21 066103
|
|
| [34] | Yu Y X 2009 J. Chem. Phys. 131 024704
|
|
| [35] | Ramakrishnan T V and Yussouff M 1979 Phys. Rev. B 19 2775
|
|
| [36] | Calleja M, North A N, Powels J G and Rickayzen G 1991 Mol. Phys. 73 973
|
|
| [37] | Zhou S Q and Ruckenstein E 2000 Phys. Rev. E 61 2704
|
|
| [38] | Zhou S Q and Ruckenstein E 2000 J. Chem. Phys. 112 8079
|
|
| [39] | Choudhury N and Ghosh S K 2001 J. Chem. Phys. 114 8530
|
|
| [40] | Kim S C and Suh S Y 2002 J. Chem. Phys. 117 9880
|
|
| [41] | Tarazona P 1985 Phys. Rev. A 31 2672
|
|
| [42] | Curtin W A and Ashcroft N W 1985 Phys. Rev. A 32 2909
|
|
| [43] | Rosenfeld Y 1989 Phys. Rev. Lett. 63 980
|
|
| [44] | Roth R, Evans R, Lang A and Kahl G 2002 J. Phys.: Condens. Matter 14 12063
|
|
| [45] | Yu Y X and Wu J Z 2002 J. Chem. Phys. 117 10156
|
|
| [46] | Yu Y X, Wu J Z, Xin Y X and Gao G H 2004 J. Chem. Phys. 121 1535
|
|
| [47] | You F Q, Yu Y X and Gao G H 2005 J. Chem. Phys. 123 114705
|
|
| [48] | Niu Y Q, Wei W, Zheng B, Zhang C X and Meng Q T 2013 Chin. Phys. B 22 128701
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