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Shear-Assisted Production of Few-Layer Boron Nitride Nanosheets by Supercritical CO 2 Exfoliation and Its Use for Thermally Conductive Epoxy Composites

机译:通过超临界CO 2剥离的剪切辅助生产几层氮化物纳米片及其用于导热环氧复合材料的用途

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Boron nitride nanosheets (BNNS) hold the similar two-dimensional structure as graphene and unique properties complementary to graphene, which makes it attractive in application ranging from electronics to energy storage. The exfoliation of boron nitride (BN) still remains challenge and hinders the applications of BNNS. In this work, the preparation of BNNS has been realized by a shear-assisted supercritical CO2 exfoliation process, during which supercritical CO2 intercalates and diffuses between boron nitride layers, and then the exfoliation of BN layers is obtained in the rapid depressurization process by overcoming the van der Waals forces. Our results indicate that the bulk boron nitride has been successfully exfoliated into thin nanosheets with an average 6 layers. It is found that the produced BNNS is well-dispersed in isopropyl alcohol (IPA) with a higher extinction coefficient compared with the bulk BN. Moreover, the BNNS/epoxy composite used as thermal interface materials has been prepared. The introduction of BNNS results in a 313% enhancement in thermal conductivity. Our results demonstrate that BNNS produced by supercritical CO2 exfoliation show great potential applications for heat dissipation of high efficiency electronics.
机译:氮化硼纳米片(BNNS)将类似的二维结构保持为石墨烯和与石墨烯互补的独特性能,这使得它在从电子设备到储能的应用中具有吸引力。氮化硼(BN)的剥离仍然仍然是挑战并阻碍了BNN的应用。在这项工作中,通过剪切辅助超临界CO 2剥离方法实现了BNN的制备,在此期间超临界CO 2嵌入并在氮化硼层之间扩散,然后通过克服快速减压过程中的BN层的剥离。范德沃尔斯力量。我们的结果表明,散装氮化物已成功地剥离成具有平均6层的薄纳米片。结果发现,与散装BN相比,产生的BNN分散在异丙醇(IPA)中,其具有较高的消光系数。此外,已经制备了作为热界面材料的BNNS /环氧复合材料。 BNN的引入导致导热率的增强313%。我们的结果表明,通过超临界CO2剥离产生的BNN显示出高效电子散热的潜在应用。

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