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首页> 外文期刊>Journal of Materials Science >Facile orientation of unmodified BN nanosheets in polysiloxane/BN composite films using a high magnetic field
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Facile orientation of unmodified BN nanosheets in polysiloxane/BN composite films using a high magnetic field

机译:高磁场在聚硅氧烷/ BN复合膜中未改性BN纳米片的容易取向

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摘要

Composite films consisting of highly oriented boron nitride (BN) nanosheets in polysiloxane were fabricated without modifying the BN surface by applying a high magnetic field generated by a superconducting magnet. The hexagonal BN nanosheets were dispersed by sonication in a prepolymer mixture of polysiloxane. The homogeneous suspension was then cast on a polyamide spacer of microscale thickness and a magnetic field was applied before the mixture became crosslinked. The BN nanosheets in the polysiloxane were aligned with high anisotropy either parallel or perpendicular to the composite film plane depending on the magnetic flux direction. The fabricated composite films exhibited enhanced thermal conductivity by controlling the anisotropy of the BN nanosheets in the film. The mechanisms for rotation of BN nanosheets and heat diffusion across the composite film are discussed.
机译:通过施加由超导磁体产生的高磁场,无需改变BN表面即可制造由聚硅氧烷中的高取向氮化硼(BN)纳米片组成的复合膜。通过超声处理将六角形BN纳米片分散在聚硅氧烷的预聚物混合物中。然后将均匀的悬浮液浇铸在微米级厚度的聚酰胺垫片上,并在混合物交联之前施加磁场。根据磁通量方向,将聚硅氧烷中的BN纳米片以平行于或垂直于复合膜平面的高各向异性排列。通过控制薄膜中BN纳米片的各向异性,制成的复合薄膜具有增强的导热性。讨论了BN纳米片旋转和热扩散穿过复合膜的机理。

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