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电导率可调透明柔性纳米线填充聚合物复合材料:磁场中纳米线的取向控制。

Electric conductivity-tunable transparent flexible nanowire-filled polymer composites: orientation control of nanowires in a magnetic field.

机构信息

Graduate School of Advanced Integrated Science, Chiba University, 1-33 Yayoi-cho, Inage-ku, Chiba 263-8522, Japan.

出版信息

ACS Appl Mater Interfaces. 2011 Jul;3(7):2341-8. doi: 10.1021/am200260v. Epub 2011 Jun 22.

DOI:10.1021/am200260v
PMID:21623632
Abstract

Cobalt compound nanowires were dispersed in a transparent nonconductive polymer film by merely stirring, and the film's transparency and electrical conductivity were examined. This composite film is a unique system in which the average length of the nanowires exceeds the film's thickness. Even in such a system, a percolation threshold existed for the electric conductivity in the direction of the film thickness, and the value was 0.18 vol%. The electric conductivity value changed from ∼1 × 10(-12) S/cm to ∼1 × 10(-3) S/cm when the volume fraction exceeded the threshold. The electric conductivity apparently followed the percolation model until the volume fraction of the nanowires was about 0.45 vol %. The visible light transmission and electric conductivity of the composite film of about 1 vol % nanowires were 92% and 5 × 10(-3) S/cm, respectively. Moreover, the electric conductivity in the direction parallel to the film surface did not depend on the amount of the dispersed nanowires, and its value was about 1 × 10(-14) S/cm. Even in a weak magnetic field of about 100 mT, the nanowires were aligned in a vertical and parallel direction to the film surface, and the electric conductivity of each aligned composite film was 2.0 × 10(-2) S/cm and 2.1 × 10(-12) S/cm. The relation between the average wire length and the electric conductivity was examined, and the effect of the magnetic alignment on that relation was also examined.

摘要

钴化合物纳米线通过搅拌分散在透明的非导电聚合物薄膜中,并对薄膜的透光率和导电性进行了研究。这种复合薄膜是一种独特的体系,其中纳米线的平均长度超过了薄膜的厚度。即使在这样的体系中,在薄膜厚度方向上的电导率也存在渗流阈值,其值为 0.18 体积%。当体积分数超过阈值时,电导率值从约 1×10(-12) S/cm 变化到约 1×10(-3) S/cm。电导率明显遵循渗流模型,直到纳米线的体积分数约为 0.45 体积%。约 1 体积%纳米线的复合薄膜的可见光透过率和电导率分别为 92%和 5×10(-3) S/cm。此外,与薄膜表面平行方向的电导率不依赖于分散纳米线的数量,其值约为 1×10(-14) S/cm。即使在约 100 mT 的弱磁场中,纳米线也垂直和平行于薄膜表面排列,每个定向复合薄膜的电导率分别为 2.0×10(-2) S/cm 和 2.1×10(-12) S/cm。研究了平均线长与电导率之间的关系,并研究了磁场定向对该关系的影响。

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