English
新闻公告
More
化学进展 2007, Vol. 19 Issue (0203): 212-219 前一篇   后一篇

• 综述与评论 •

胶体颗粒在液-液界面上的吸附行为及界面组装

黄维安1*;蓝强2;张妍2   

  1. 1.中国石油大学(华东)石油工程学院钻井液研究室 东营 257061;

    2.山东大学胶体与界面化学教育部重点实验室 济南 250100

  • 收稿日期:2006-04-25 修回日期:2006-07-12 出版日期:2007-03-24 发布日期:2007-03-24
  • 通讯作者: 黄维安

Colloid Particles Adsorption and Interfacial Assembly at the Fluids Interface

Huang Weian1*;Lan Qiang2;Zhang Yan2   

  1. 1.Facuty of Petroleum Engineering, China University of Petroleum, Dongying, Shandong 257061;

    2.Key Laboratory for Colloid Interface Chemistry,Ministry of Education, Shandong University, Jinan, Shandong 250100,China

  • Received:2006-04-25 Revised:2006-07-12 Online:2007-03-24 Published:2007-03-24
  • Contact: Huang Weian
综述了胶体颗粒在油水界面上的吸附行为及其应用。胶体颗粒在界面上的吸附行为主要受颗粒大小、相互作用力、电性质及润湿性质等因素的影响。本文第一部分主要从作用力出发阐述了胶体颗粒在液-液吸附过程中各种影响因素的理论研究进展;第二部分主要阐述了胶体颗粒在液-液界面上的吸附能够在界面组装、乳液和具有特殊功能的新材料制备等领域中的应用。
The phenomenon of adsorption of colloidal particles at interfaces between two immiscible liquids including plane and curved interfaces is reviewed. The adsorption of colloid particles at the interface has been affected by lots of complicated factors such as size, mutual interaction of intra-particles, charging, wet-ability, etc . In the first part, we summarize the theoretic development during the adsorption of colloid particles beginning with basic interaction forces. In the second part, we mainly discuss the applications of adsorption of colloid particles at the interface in the fields of the interfacial assembly, emulsions and new materials with special functions.

中图分类号: 

()

[ 1 ] Pickering S U. J . Chem. Soc. , 1907 , 91 : 2001 —2021
[ 2 ] Sullivan A P , Kilpatrick P K. Ind. Eng. Chem. Res. , 2002 ,41 : 3389 —3404
[ 3 ] Castaldi F J . Environmental Progress , 2003 , 22 : 25 —36
[ 4 ] Moosai R , Dawe R A. Sep. Purif . Technol . , 2003 , 33 : 303 —314
[ 5 ] Xu H , Goedel W A. Langmuir , 2003 , 19 : 4950 —4952
[ 6 ] Quere D , Aussillous P. Chem. Eng. Technol . , 2002 , 25 : 925 —928
[ 7 ] Arditty S , Whitby C P , Binks B P , Schmitt V , Leal2Calderon F.Eur. Phys. J . , 2003 , 11 : 273 —281
[ 8 ] Alargova R G, Warhadpande D S , Paunov V N , Velev O D.Langmuir , 2004 , 20 : 10371 —10374
[ 9 ] Binks B P , Horozov T S. Angew. Chem. Int . Ed. , 2005 , 44 :3722 —3725
[10] Ese M H , Selsbak C M, Hannisdal A , Sjoblom J J . Dispersion Sci . Technol . , 2005 , 26 : 145 —154
[11] Korner C , Arnold M, Singer R F. Materials Science and Engineering A: Structural Materials Properties Microstructure and Processing , 2005 , 396 : 28 —40
[12] Saleh N , Sarbu T , Sirk K, Lowry G V , Matyjaszewski K, Tilton R D. Langmuir , 2005 , 21 : 9873 —9878
[13] Subramaniam A B , Abkarian M, Stone H A. Nat . Mater. , 2005 ,4 : 553 —556
[14] Pieranski P. Phys. Rev. Lett . , 1980 , 45 : 569 —572
[15] Lin Y, Skaff H , Bêker A , Dinsmore A D , Emrick T , Russell T P. J . Am. Chem. Soc. , 2003 , 125 : 12690 —12691
[16] He X D , Ge X W, Wang M Z , Zhang Z C. Polymer , 2005 , 46 :7598 —7604
[17] Skaff H , Lin Y, Tangirala R , Breitenkamp K, Boker A , Russell T P , Emrick T. Adv. Mater. , 2005 , 17 : 2082 —2086
[18] Bragg L , Nye J F , Proc. R. Soc. London Ser. A: Math. Phys.Eng. Sci . , 1947 , 190 : 474 —479
[19] Cheng WL , Dong S J , Wang E K. J . Phys. Chem. B , 2005 ,109 : 19213 —19218
[20] Lin Y, Boker A , He J B , et al . Nature , 2005 , 434 : 55 —59
[21] Hsu M F , Nikolaides M G, Dinsmore A D , et al . Langmuir ,2005 , 21 : 2963 —2970
[22] Israelachvili J N. Intermolecular and Surface Forces , 2nd ed.Amsterdam: Academic Press , 2003
[23] Binks B P. Curr. Opin. Colloid Interface Sci . , 2002 , 7 : 21 —41
[24] Nonomura Y, Komura S , Tsujii K. Langmuir , 2005 , 21 : 9409 —9411
[25] Dimeglio J M, Raphael E. J . Colloid Interface Sci . , 1990 , 136 :581 —583
[26] Omota F , Dimian A C , Bliek A. Chem. Eng. Sci . , 2006 , 61 :835 —844
[27] Paunov V N. Langmuir , 2003 , 19 : 7970 —7976
[28] Lin Y, Skaff H , Emrick T , Dinsmore A D , Russell T P. Science ,2003 , 299 : 226 —229
[29] Takahara Y K, Ikeda S , Ishino S , Tachi K, Ikeue K, Sakata T ,Hasegawa T , Mori H , Matsumura M, Ohtani B. J . Am. Chem.Soc. , 2005 , 127 : 6271 —6275
[30] Lin Y, Boker A , Skaff H , Cookson D , Dinsmore A D , Emrick T ,Russell T P. Langmuir , 2005 , 21 : 191 —194
[31] Hsu M F , Dufresne E R , Weitz D A. Langmuir , 2005 , 21 :4881 —4887
[32] Marinova K G, Alargova R G, Denkov N D , Velev O D , Petsev D N , Ivanov I B , Borwankar R P. Langmuir , 1996 , 12 : 2045 —2051
[33] Paunov V N , Binks B P , Ashby N P. Langmuir , 2002 , 18 :6946 —6955
[34] Mbamala E C , von Grunberg H H. Phys. Rev. E , 2003 , 67 :art . no. 0316081
[35] Binks B P , Thonny A. Angew. Chem. Int . Ed. , 2005 , 44 :441 —444
[36] Tambe D E , Sharma M M. Adv. Colloid Interface Sci . , 1994 ,52 : 1 —63
[37] Nikolaides M G, Bausch A R , Hsu M F , Dinsmore A D , Brenner M P , Gay C , Weitz D A. Nature , 2003 , 424 : 1014 —1014
[38] Chen W, Tan S S , Ng T K, Ford W T , Tong P. Phys. Rev.Lett . , 2005 , 95 : art . no. 218301
[39] Gomez-Guzman O , Ruiz-Garcia J . J . Colloid Interface Sci . ,2005 , 291 : 1 —6
[40] Aveyard R , Binks B P , Clint J H , Fletcher P D I , Horozov T S ,Neumann B , Paunov V N. Phys. Rev. Lett . , 2002 , 88 : art .no. 246102
[41] Tarimala S , Dai L L. Langmuir , 2004 , 20 : 3492 —3494
[42] Edmond K V , Marquez M, Rothstein J P , Dinsmore A D. Phys.Rev. Lett . , 2006 , 101 : 2256 —2261
[43] Kralchevsky P A , Nagayama K. Adv. Colloid Interface Sci . ,2000 , 85 : 145 —192
[44] Witten T A , Pincus P. Structured Fluids. Oxford : Oxford University Press , 2004
[45] Vassileva N D , van den Ende D , Mugele F , Mellema J .Langmuir , 2005 , 21 : 11190 —11200
[46] Vella D , Kim H Y, Mahadevan L. J . Fluid Mech. , 2004 , 502 :89 —98
[47] Falkovich G, Weinberg A , Denissenko P , Lukaschuk S. Nature ,2005 , 435 : 1045 —1046
[48] Oettel M, Dominguez A , Dietrich S. Phys. Rev. E , 2005 , 71 :art . no. 051401
[49] Hurd A J . J . Phys. A: Math. Gen. , 1985 , 18 : L1055 —L1060
[50] Oettel M, Dominguez A , Dietrich S. J . Phys.2Condens. Matter ,2005 , 17 : L337 —L342
[51] Danov K D , Kralchevsky P A , Boneva M P. Langmuir , 2004 ,20 : 6139 —6151
[52] Lucassen J . Colloids Surfaces , 1992 , 65 : 131 —137
[53] Danov K D , Kralchevsky P A , Naydenov B N , Brenn G. J .Colloid Interface Sci . , 2005 , 287 : 121 —134
[54] Kralchevsky P A , Paunov V N , Denkov N D , Nagayama K. J .Colloid Interface Sci . , 1994 , 167 : 47 —65
[55] Loudet J C , Alsayed A M, Zhang J , Yodh A G. Phys. Rev.Lett . , 2005 , 94 : art . no. 018301
[56] Wang H , Hobbie E K. Langmuir , 2003 , 19 : 3091 —3093
[57] Dai L L , Sharma R , Wu C Y. Langmuir , 2005 , 21 : 2641 —2643
[58] Binks B P , Lumsdon S O. Physical Chemistry Chemical Physics ,2000 , 2 : 2959 —2967
[59] Henry J D , Prudich M E , Lau C. Colloids Surf . , 1980 , 1 :335 —348
[60] Lin Y, Boker A , Skaff H , et al . Langmuir , 2005 , 21 : 191 —194
[61] Reincke F , Hickey S G, Kegel N K, et al . Angew. Chem. Int .Ed. , 2004 , 43 : 458 —461
[62] Wang D Y, Duan H W, Mohwald H. Soft Matter , 2005 , 1 :412 —416
[63] Duan H W, Wang D Y, Sobal N S , et al . Nano Letters , 2005 ,5 : 949 —952
[64] Aveyard R , Binks B P , Clint J H. Adv. Colloid Interf . Sci . ,2003 , 100/102 : 503 —546
[65] Yan N X, Masliyah J H. Journal of Colloid and Interface Science ,1996 , 181 : 20 —27
[66] Finkle P , Draper H D , Hildebrand J H. J . Am. Chem. Soc. ,1923 , 45 : 2780 —2786
[67] Horvolgyi Z , Nemeth S , Fendler J H. Langmuir , 1996 , 12 :997 —1004
[68] Binks B P , Fletcher P D I. Langmuir , 2001 , 17 : 4708 —4710
[69] Melle S , Lask M, Fuller G G. Langmuir , 2005 , 21 : 2158 —2162
[70] Ngai T , Behrens S H , Auweter H. Chem. Commun. , 2005 ,331 —333
[71] Dinsmore A D , Hsu M F , NikolaidesM G, MarquezM, Bausch A R , Weitz D A. Science , 2002 , 298 : 1006 —1009
[72] Collier C P , Saykally RJ , Shiang J J , Henrichs S E , Heath J R.Science , 1997 , 277 : 1978 —1981
[73] Markovich G, Collier C P , Heath J R. Phys. Rev. Lett . , 1998 ,80 : 3807 —3810
[74] Duan H W, Wang D A , Kurth D G, Mohwald H. Angew. Chem.Int . Ed. , 2004 , 43 : 5639 —5642
[75] Reincke T , Hickey S G, Kegel W K, Vanmaekelbergh D.Angew. Chem. Int . Ed. , 2004 , 43 : 458 —462
[76] Mallamace F , Chen S H , Coniglio A , et al . Physical Review E ,2006 , 73 : art . no. 020402
[77] Gu H W, Yang Z M, Gao J H , Chang C K, Xu B. J . Am.Chem. Soc. , 2005 , 127 : 34 —35
[78] Helseth L E. Langmuir , 2005 , 21 : 7276 —7279
[79] Helfrich M R , El-Kouedi M, Etherton M R , Keating C D.Langmuir , 2005 , 21 : 8478 —8486
[80] Link D R , Anna SL , Weitz D A , Stone H A. Phys. Rev. Lett . ,2004 , 92 : art . no. 054503
[81] Utada A S , Lorenceau E , Link D R , Kaplan P D , Stone H A ,Weitz D A. Science , 2005 , 308 : 537 —541
[82] Yuan X F , Fischer K, Schartl W. Langmuir , 2005 , 21 : 9374 —9380
[83] Squires T M, Quake S R. Rev. Mod. Phys. , 2005 , 77 : 977 —1026

[1] 赵晓竹, 李雯, 赵学瑞, 何乃普, 李超, 张学辉. MOFs在乳液中的可控生长[J]. 化学进展, 2023, 35(1): 157-167.
[2] 张元霞, 鲍艳, 马建中. 两亲性Janus粒子的合成及其在Pickering乳液中的应用[J]. 化学进展, 2021, 33(2): 254-262.
[3] 田诗伟, 毛国梁, 张珈瑜, 历娜, 姜梦圆, 吴韦. 开关型Pickering乳液体系[J]. 化学进展, 2020, 32(4): 434-453.
[4] 郭爽, 陈志强, 任笑菲, 张永民*, 刘雪锋*. CO2响应型乳液体系[J]. 化学进展, 2017, 29(7): 695-705.
[5] 卫林峰, 马建中, 张文博, 鲍艳. 氧化石墨烯和石墨烯量子点的两亲性调控及其在Pickering乳液聚合中的应用[J]. 化学进展, 2017, 29(6): 637-648.
[6] 叶德楷, 左小磊, 樊春海. 基于DNA纳米结构的传感界面调控及生物检测应用[J]. 化学进展, 2017, 29(1): 36-46.
[7] 杨平辉, 孙巍, 胡思, 陈忠仁. 纳米粒子的界面自组装[J]. 化学进展, 2014, 26(07): 1107-1119.
[8] 钱东金*, 付艳荣. 紫精类化合物分子聚集体材料的界面组装[J]. 化学进展, 2013, 25(01): 46-53.
[9] 易成林, 杨逸群, 江金强, 刘晓亚, 江明. 颗粒乳化剂的研究及应用[J]. 化学进展, 2011, 23(01): 65-79.
[10] 钱东金 刘安. 氢酶分子聚集体薄膜的组装及其在催化产氢中的应用* [J]. 化学进展, 2009, 21(10): 2009-2016.
[11] 杨飞,王君,蓝强,孙德军,李传宪. Pickering乳状液的研究进展*[J]. 化学进展, 2009, 21(0708): 1418-1426.
[12] 刘冰,陈海涛,钱东金. 界面组装金属—多卟啉阵列结构及其纳米晶*[J]. 化学进展, 2007, 19(06): 872-877.
[13] 张波,刘洪来,胡英. 带同种电荷胶体颗粒间的相互吸引*[J]. 化学进展, 2001, 13(01): 1-.