English
新闻公告
More
化学进展 2004, Vol. 16 Issue (05): 673-   后一篇

• 综述与评论 •

固液界面纳米气泡的研究进展

张雪花;胡钧*   

  1. (上海交通大学生命学院纳米生物学实验室 上海 200030)
  • 收稿日期:2003-12-01 修回日期:2004-03-01 出版日期:2004-10-14 发布日期:2004-10-14
  • 通讯作者: 胡钧

Nanobubbles at the Solid/Water Interface

Zhang Xuehua;Hu Jun*5   

  1. (Nanobiology Laboratory, Bio-X life Science Research Center, Shanghai Jiaotong University, Shanghai 200030, China)
  • Received:2003-12-01 Revised:2004-03-01 Online:2004-10-14 Published:2004-10-14
  • Contact: Hu Jun
根据经典热力学理论,在水中纳米级的气泡难以长期稳定存在.近年来却有大量的实验结果表明固液界面存在纳米气泡,原子力显微镜也直接观察到了纳米气泡.有关纳米气泡的研究具有巨大的理论和实际意义,它对表面科学、流体动力学、生物科学以及一些应用领域都有深远的影响.纳米气泡会引起流体在界面的滑移,减少流动阻力,并与表面粘附、胶体分散、矿石浮选、废渣处理等方面密切相关.目前关于纳米气泡的研究才刚刚开始,对于它的基本物化性质的了解还不多,但其重要性已经引起相关领域的极大关注.本文综述了从提出纳米气泡存在一直到实验证明的过程、纳米气泡的形成机制和形貌、分布特征等基本性质以及纳米气泡的存在对疏水长程作用和流体滑移的影响,并阐述了生物学中一些与纳米气泡存在有关的问题.
Bubbles at nanometer scale could not exist stably according to classic theories. A lot of recent experi-mental results, however, have proven that there are nanobubbles at solid/water interface. The images of atomic force mi-croscopy ( AFM ) in liquids revealed nanobubbles adsorbed on solid surfaces and provided the direct evidence for their ex-istence . The presence of nanobubbles at the solid/liquid interface may be related to some important interfacial phenome-na , for example the hydrophobic attraction and the slippage of simple fluids near a wall. So it has profound meanings in surface science, hydrodynamics, biology and many application fields. At present the study of nanobubbles is on the ini-tial stage and researchers have paid enough attention to its influence. In this article the indirect and direct evidence for the presence of nanobubbles and the basic properties of nanobubbles, including its formation mechanism, morphography and distribution, are reviewed. And the influence of nanobubbles on the long-rang hydrophobic interaction, fluid slippage and some biological problems is discussed.

中图分类号: 

()

[ 1 ] Hu J , Xiao X D , Ogletree D F , Salmeron M. Science , 1995 ,268 : 267 —268
[ 2 ] Xu L , Lio A , Hu J , Ogletree F D , Salmeron M. J . Phys. Chem.B , 1998 , 102 (3) : 540 —548
[ 3 ] Ljunggren S , Eriksson J C. Colloids Surf . A , 1997 , (129/130) :151 —155
[ 4 ] Attard P. Adv. Colloid Interface , 2003 , 104 : 75 —91
[ 5 ] Christenson H K, Claesson P M. Science , 1988 , 239 : 390 —392
[ 6 ] 白春礼(Bai C L) , 田芳(Tian F) , 罗克(Lou K) . 扫描力显微术(Scanning Probe Microscopy) . 北京(Beijing) :科学出版社(Science Press) , 2000. 245 —246
[ 7 ] Carambassis A , Jonker L C , Attard P , Rutland MW. Phys. Rev.Lett . , 1998 , 80 (24) : 5357 —5360
[ 8 ] Mahnke J , Stearnes J , Hayes R A , Fornasiero D , Ralston J .Phys. Chem. Chem. Phys. , 1999 , 1 : 2793 —2798
[ 9 ] Craig V S J , Ninham B W, Pashley R M. Langmuir , 1999 , 15(4) : 1562 —1569
[10] Zhou Z A , Xu Z H , Finch J A. J . Colliod Interface. Sci . , 1996 ,179 : 311 —314
[11] Considine R F , Hayes R A , Horn R G. Langmuir , 1999 , 15 :1657 —1659
[12] Harvey P A , Nguyen A V , Evans GM. J . Colliod Interface Sci . ,2002 , 250 : 337 —343
[13] Gong W, Stearnes J , Hayes R A , Fornasiero D , Ralston J . Phys.Chem. Chem. Phys. , 1999 , 1 : 2799 —2803
[14] Snoswell D R E , Duan J , Fornasiero D , Ralston J . J . Phys.Chem. B , 2003 , 107 : 2986 —2994
[15] Miller J D , Hu Y H , Veeramasuneni S , Lu Y Q. Colloids Surf .A , 1999 , 154 : 137 —147
[16] Ishida N , Inoue T, Miyara M, Higashitani K. Langmuir , 2000 ,16 : 6377 —6380
[17] Lou S T, Gao J X, Xiao X D , Li X J , Li GL , Zhang Y, Li M Q , Sun J L , Li X H , Hu J . Mater. Charact . , 2002 , 48 : 211 —214
[18] Lou S T, Ouyang Z Q , Zhang Y, Li X J , Hu J , Li MQ , Yang F J . J . Vac. Sci . Technol . B , 2000 , 18 : 2573 —2575
[19] Yyrrell J W G, Attard P. Phys. Rev. Lett . , 2001 , 87 (17) : art .no. 176104
[20] Tyrrell J W G, Attard P. Langmuir , 2002 , 18 : 160 —167
[21] Physics News Update 2001 , October 15 , Number 561 # 2
[22] Jacoby M. Chemical & Engineering News , 2001 , 79 (44) : 10
[23] Steitz R , Gutberlet T, Hauss T, Klêsgen B , Krastev R , Schemmel S , Simonsen A C , Findenegg G H. Langmuir , 2003 , 19(6) : 2409 —2418
[24] Schwendel D , Hayashi T, Dahint R , Pertsin A , Grunze M, Steitz R , Schreiber F. Langmuir , 2003 , 19 : 2284 —2293
[25] Ishida N , Sakamoto M, Miyahara M, Higashitani K. J . Colliod Interface Sci . , 2002 , 253 : 112 —116
[26] de Gennes P G. Langmuir , 2002 , 18 : 3413 —3414
[27] Yang J , Duan J , Fornasiero D , Ralston J . J . Phys. Chem. B ,2003 , 107 (25) : 6139 —6147
[28] Yakubov G E , Butt H J , Vinogradova O I. J . Phys. Chem. B ,2000 , 104 : 3407 —3410
[29] Ishida N , Sakamoto M, Miyara M, Higashitani K. Langmuir ,2000 , 16 : 5681 —5687
[30] Jensen T R , Jensen M, Reitzel N , Balashev K, Peters G H.Phys. Rev. Lett . , 2003 , 90 (8) : article no. 086101
[31] Ishida N , Kinoshita N , Miyahara M, Higashitani K. J . Colloid Interface Sci . , 1999 , 216 : 387 —393
[32] Sakamoto M, Kanda Y, Miyahara M, Higashitani K. Langmuir ,2002 , 18 : 5713 —5719
[33] Yaminsky V , Ohnishi S. Langmuir , 2003 , 19 : 1970 —1976
[34] Ball P. Nature , 2003 , 423 : 25 —26.
[35] 张雪花(Zhang X H) , 楼柿涛(Lou S T) , 张志祥(Zhang Z X) ,张晓东(Zhang X D) , 孙洁林(Sun J L) , 胡钧(Hu J ) . 电子显微学报(Journal of Chinese Electron Microscopy Society) 2003 ,22 (2) : 136 —141.
[36] Scardina P , Edwards M J . Environ. Eng.-ASCE , 2001 , 127(11) : 968 —973
[37] Eriksson J C , Ljunggren S. Colloids Surf . A , 1997 , 159 : 159 —163
[38] Jones S F , Evans G M, Galvin K P. Adv. Colloid Interface ,1999 , 80 : 27 —50
[39] Parker J L , Claesson P M, Attard P. J . Phys. Chem. , 1994 ,98 : 8468 —8480
[40] Spalla O. Curr. Opin. Colloid In. , 2000 , 5 : 5 —12
[41] Ralston J , Fornasiero D , Mishchuk N. Colloid Surface A , 2001 ,192 : 39 —51
[42] Pashley R M. J . Phys. Chem. B , 2003 , 107 : 1714 —1720
[43] Thomas O C , Cavicchi R E , Tarlov M J . Langmuir 2003 , 19 :6168 —6177
[44] Granick S , Zhu Y, Lee H. Nat . Mater. , 2003 , 2 : 1 —7
[45] Vinogradova O I. Int . J . Miner. Process , 1993 , 56 : 31 —60
[46] Qu?r? D. Nat . Mater. , 2002 , 1 : 14 —15
[47] Bico J , Thiele U , Qu?r? D. Colloid Surface A , 2002 , 206 : 41 —46
[48] Vogler E A. Adv. Colloid Interface , 1998 , 74 : 69 —117
[49] Vogler E A. J . Biomater. Sci . Polymer Edn. , 1999 , 10 : 1015 —1045
[50] Holmberg M, Kuhle A , Garnaes J , M? rch K A , Boisen A. Langmuir , 2003 , 19 : 10510 —10513
[51] Zhang X, Zhu Y, Granick S. Science , 2002 , 295 : 663 —666
[52] ten Wolde P R , Chandler D. Proc. Natl . Acad. Sci . USA ,2002 , 99 : 6539 —6543
[53] ten Wolde P R. J . Phys.-Condens. Mat . , 2002 , 14 : 9445 —9460
[54] Kim H K, Tuite E , Nordén1 B , Ninham B W. Eur. Phys. J . E , 2001 , 4 : 411 —417
[55] Attard P , Moody M P , Tyrrell J W G. Physica A , 2002 , 314 :696 —705
[56] Mishchuk N , Ralston J , Fornasiero D. J . Phys. Chem. A , 2002 ,106 : 689 —696
[57] Attard P. Langmuir , 2000 , 16 : 4455 —4466

[1] 李大勇*, 王伟杰, 赵学增*. 固液界面纳米气泡研究[J]. 化学进展, 2012, 24(08): 1447-1455.
[2] 何立芳,林丹丽,李耀群. 同步荧光分析法的应用及其新进展*[J]. 化学进展, 2004, 16(06): 879-.
[3] 刘照胜,高如瑜. 电色谱整体柱的研究进展*[J]. 化学进展, 2003, 15(06): 462-.
[4] 陈令新,关亚风,马继平. 微柱液相色谱的研究进展[J]. 化学进展, 2003, 15(02): 107-.
[5] 米健秋,张新祥,常文保. 毛细管电泳免疫分析的发展及动向*[J]. 化学进展, 2003, 15(01): 31-.
[6] 吕玉娟,朱锡海. 溶剂气浮分离技术研究现状与发展方向[J]. 化学进展, 2001, 13(06): 441-.
[7] 高志明,李井会,高礼让,朱秀慧. 小波分析在化学中的应用进展[J]. 化学进展, 2000, 12(02): 179-.
[8] 李新勇,李树本. 纳米半导体研究进展[J]. 化学进展, 1996, 8(03): 231-.
[9] 汪家鼎,费维扬. 溶剂萃取的最新进展[J]. 化学进展, 1995, 7(03): 219-.
阅读次数
全文


摘要

固液界面纳米气泡的研究进展