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Fabrication of Noncovalently Functionalized Boron Nitride Nanotubes with High Stability and Water-Redispersibility

机译:具有高稳定性和水再分散性的非共价官能化氮化硼纳米管的制造

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摘要

Boron nitride nanotubes (BNNTs) have attracted significant interest because of the remarkable difference in their physical properties compared with carbon nanotubes and their far-reaching potential applications, including electrical insulators; thermally conducting, catalytic, and piezoelectric materials; and neutron absorbers. Despite their unique physical properties, the bundling and insolubility of BNNTs in water because of its substantial van der Waals attraction and hydrophobicity, respectively, give rise to many limitations in practical applications. Here, we present a new way to produce a highly stable BNNT dispersion by the noncovalent functionalization of the BNNT surface in water. The noncovalently functionalized BNNTs (p-BNNTs) have been found to be highly stable in water for a long time (>1 year) and easily water-redispersible by mild vortex mixing for a few minutes even after freeze-drying at -45 degrees C. The p-BNNTs were cylindrically encapsulated with polymerizable surfactants (BNNT diameter = ca. 3 nm and surfactant thickness = 0.8 nm).
机译:氮化硼纳米管(BNNT)吸引了显着的兴趣,因为与碳纳米管的物理性质的显着差异,以及它们的远达潜在的应用,包括电绝缘体;热传导,催化和压电材料;和中子吸收剂。尽管其具有独特的物理性质,但分别在水中的基本van der Waals吸引力和疏水性分别产生了BNNTS在水中的捆绑和不溶解性,在实际应用中产生了许多限制。在这里,我们提出了一种通过BNNT表面的非共价官能化产生高度稳定的BNNT分散的新方法。已发现非共价官能化的BNNT(P-BNNT)在水中高度稳定(> 1年),甚至在-45摄氏度的冷冻干燥后,通过温和的涡流混合易于水中可再现。通过可聚合表面活性剂(BNNT直径= Ca.3nm和表面活性剂厚度= 0.8nm),p-bnnts圆柱形包封。

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