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Optical activity of microemulsion induced by electric field and its tunable behaviors 被引量:2

Optical activity of microemulsion induced by electric field and its tunable behaviors
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摘要 It has been shown that optical activity can occur in microemulsion under external electric field and rotation angle can also be tuned by the electric field. A set of microemulsions (water/Span80/transformer oil) with different water concentration were prepared and their optical activity was measured with the changes of applied electric field and θ, the angle between the electric vector of the incident linearly polarized light and the external electric field, using an automatic polarimeter. The experiments indicate that when none of the external electric field, water concentration and θ are zero, there is optical activity in microemulsions. For a given concentration, rotation angle ψ increases with electric field, and it firstly increases, passes through a maximum at C = C0,then monotonically decreases as C increases when electric field keeps constant. The relationship between the rotation angle and θ is also obtained. It is thought that the electric field-induced destroy of spatial symmetry of microemulsion is responsible for the optical activity of microemulsion. It has been shown that optical activity can occur in microemulsion under external electric field and rotation angle can also be tuned by the electric field. A set of microemulsions (water/Span80/transformer oil) with different water concentration were prepared and their optical activity was measured with the changes of applied electric field and θ, the angle between the electric vector of the incident linearly polarized light and the external electric field, using an automatic polarimeter. The experiments indicate that when none of the external electric field, water concentration and θ are zero, there is optical activity in microemulsions. For a given concentration, rotation angle ψ increases with electric field, and it firstly increases, passes through a maximum atC=C 0, then monotonically decreases asC increases when electric field keeps constant. The relationship between the rotation angle and θ is also obtained. It is thought that the electric field-induced destroy of spatial symmetry of microemulsion is responsible for the optical activity of microemulsion.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2003年第2期164-172,共9页 中国科学:物理学、力学、天文学(英文版)
基金 the National Natural Science Foundation of China(Grant No.59832090) the National Natural Science Foundation of China for Distinguished Young Scholar(Grant No.50025207).
关键词 SOFT matter optical activity microemulsion. soft matter optical activity microemulsion
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  • 1刘晓华,赵晓鹏.电流变液透光性的可调节特征[J].光学学报,1996,16(8):1211-1214. 被引量:9
  • 2Winslow W M. Methods and means for translating electrical impulse into mechanical force. US Patent.Spectification. 2417850,1947
  • 3Counter S P. Weiss K D, Carlson J D. Engineering application of electrorheological materials. J. Intell. Mat.Syst. & Struct., 1993, 4(2):248-252
  • 4Halsey T C, Matin J E. Electrorheological Fluids.Scientific American, 1993, 2,69 (4): 58-64
  • 5Tada H, Saito Y, Hirata M et al.. A novel switchable glazing formed by electrically induced chains of suspensions.J. Appl. Phys.. 1993, 73(2) :489-493
  • 6Remillard J T, Ginder J M, Weber W H. Evanescent-wave scattering by electrophoretic microparticles: A mechanism for optical switching. Appl. Opt. , 1995, 34(19):3777-3785
  • 7Zhao X P, Luo C R, Zhang Z D. Optical characteristics of electrorheological and magnetorbeological fluids. Opt.Engng. , 1998, 37 (5) : 1589 - 1592
  • 8Wlsnleff R. Printing screens. Nature, 1998, 394(6690) :225 - 227
  • 9Comiskey B, Albert J D, Yoshizawa H et al.. An electrophoretic ink for all-printed reflective electronic displays. Nature, 1998, 394(6690):253- 235
  • 10Jacobson J, Comiskey B, Turner C et al.. The last book.IBM Systems J. 1997, 36(3) :457-463

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