期刊文献+

Real-time observation of template-assisted colloidal aggregation and colloidal dispersion under an alternating electric field

Real-time observation of template-assisted colloidal aggregation and colloidal dispersion under an alternating electric field
下载PDF
导出
摘要 A fascinating colloid phenomenon was observed in a specially designed template-assisted cell under an alternating electrical field. Most colloidal particles experienced the processes of aggregation, dispersion and climbing up to the plateaus of the patterns pre-lithographed on the indium tin oxide glass as the frequency of the alternating electrical field increased. Two critical frequencies fcritl ≈ 15 kHz and fcrit2 ≈ 40 kHz, corresponding to the transitions of the colloid behaviour were observed. When f 〈 15 kHz, the particles were forced to aggregate along the grooves of the negative photoresist patterned template. When 15 kHz 〈 f 〈 40 kHz, the particle clusters became unstable and most particles started to disperse and were blocked by the fringes of the negative photoresist patterns. As the frequency increased to above 40 kHz, the majority of particles started to climb up to the plateaus of the patterns. Furthermore, the dynamics analysis for the behaviour of the colloids was given and we found out that positive or negative dielectrophoresis force, electrohydrodynamic force, particle-particle interactions and Brownian motion change with the frequency of the alternating electric field. Thus, changes of the related forces affect or control the behaviour of the colloids. A fascinating colloid phenomenon was observed in a specially designed template-assisted cell under an alternating electrical field. Most colloidal particles experienced the processes of aggregation, dispersion and climbing up to the plateaus of the patterns pre-lithographed on the indium tin oxide glass as the frequency of the alternating electrical field increased. Two critical frequencies fcritl ≈ 15 kHz and fcrit2 ≈ 40 kHz, corresponding to the transitions of the colloid behaviour were observed. When f 〈 15 kHz, the particles were forced to aggregate along the grooves of the negative photoresist patterned template. When 15 kHz 〈 f 〈 40 kHz, the particle clusters became unstable and most particles started to disperse and were blocked by the fringes of the negative photoresist patterns. As the frequency increased to above 40 kHz, the majority of particles started to climb up to the plateaus of the patterns. Furthermore, the dynamics analysis for the behaviour of the colloids was given and we found out that positive or negative dielectrophoresis force, electrohydrodynamic force, particle-particle interactions and Brownian motion change with the frequency of the alternating electric field. Thus, changes of the related forces affect or control the behaviour of the colloids.
机构地区 Department of Physics
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第7期454-460,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant Nos.10874153 and 50773003) the Science Foundation of Zhejiang Sci-Tech University of China,and the Innovation Research Project for Graduate Student of Zhejiang Province of China (Grant No.YK 2009051)
关键词 template-assisted AGGREGATION DISPERSION dynamics analysis template-assisted, aggregation, dispersion, dynamics analysis
  • 相关文献

参考文献30

  • 1Arora A K and Tata B V R 1996 Ordering and Phase Transitions in Charged Colloids (New York: VCH pub- lisher Inc.) p. 1.
  • 2Zhang K Q and Liu X Y 2004 Nature 429 739.
  • 3Zhang K Q and Liu X Y 2006 Phys. Rev. Lett. 96 105701.
  • 4Xie R G and Liu X Y 2009 J. Am. Chem. Soc. 131 4976.
  • 5Feng T H, Dai Q F, Wu L J, Guo Q, Hu W and Lan S 2008 Chin. Phys. B 17 4533.
  • 6Denkov N D, Velev O D, Kralchevsky P A, Ivanov I B, Yoshimura H and Nagayama K 1992 Langmuir 8 3183.
  • 7Erb R M, Son1 H S, Samanta B, Rotello V M and Yellen B B 2009 Nature 457 999.
  • 8Williams S J, Kumar A and Wereley S T 2009 Phys. Flu- ids 21 091104.
  • 9Yan H T, Wang M, Ge Y X and Yu P 2009 Chin. Phys. B 18 2389.
  • 10Zhang L F and Huang J P 2010 Chin. Phys. B 19 024213.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部