抗磁性
液晶
微纤维
垂直的
相(物质)
材料科学
磁场
螺旋轴
各向异性
凝聚态物理
结晶学
纤维素
光学
化学
物理
几何学
有机化学
量子力学
数学
作者
Fumiko Kimura,Tsunehisa Kimura,Moritaka Tamura,Asako Hirai,Masaya Ikuno,Fumitaka Horii
出处
期刊:Langmuir
[American Chemical Society]
日期:2005-01-22
卷期号:21 (5): 2034-2037
被引量:200
摘要
Stable suspensions of tunicate cellulose microfibrils were prepared by acid hydrolysis of the cellulosic mantles of tunicin. They formed a chiral nematic phase above a critical concentration. External magnetic fields were applied to the chiral nematic phase in two different manners to control its phase structure. (i) Static magnetic fields ranging 1-28 T were used to align the chiral nematic axis (helical axis) in the field direction. (ii) A rotating magnetic field (5 T, 10 rpm) was applied to unwind the helices and to form a nematic phase. These phenomena were interpreted in terms of the anisotropic diamagnetic susceptibility of the cellulose microfibril. The diamagnetic susceptibility of the microfibril is smaller in the direction parallel (chi( parallel)) to the fiber axis than in the direction perpendicular (chi( perpendicular)) to the fiber axis, that is, chi( parallel) < chi( perpendicular) < 0. Because the helical axis coincides with the direction normal ( perpendicular) to the fiber axis, the helical axis aligned parallel to the applied field. On the other hand, the rotating magnetic field induced the uniaxial alignment of the smallest susceptibility axis, that is, chi( parallel) in the present case, and brought about unwinding of the helices.
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