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首页> 外文期刊>RSC Advances >Enhancing the mechanical and thermal properties of boron nitride nanoplatelets/elastomer nanocomposites by latex mixing
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Enhancing the mechanical and thermal properties of boron nitride nanoplatelets/elastomer nanocomposites by latex mixing

机译:通过乳胶混合增强氮化硼纳米片/弹性体纳米复合材料的机械和热性能

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Hexagonal boron nitride nanoplatelets (BNNPs) can serve as two-dimensional (2D) fillers for elastomer nanocomposites due to their excellent and intriguing mechanical and thermal properties. Homogeneous and stable dispersion of BNNPs in elastomer is key to successful composite applications. Herein we propose a facile and easily industrialized approach for incorporating fully exfoliated BNNPs with hydroxyl functional groups into elastomer using the latex compounding method. The prepared BNNPs are highly dispersed in various solvents and their size of a few microns preserves their in-plane structure. The environmentally friendly, cost-effective, scalable preparation method proposed shows great potential for advancing the performance of elastomer nanocomposites. Specifically, the incorporation of BNNPs into the elastomer matrix remarkably improved the elastic modulus and tensile strength, even at low loadings; this was ascribed to the enhanced interfacial bonding of the BNNPs with the elastomer matrix. Moreover, well-dispersed BNNPs within the elastomer provided outstanding thermal conductivity and gas permeability.
机译:六方氮化硼纳米片(BNNP)可以用作弹性体纳米复合材料的二维(2D)填充剂,因为它们具有出色的,令人着迷的机械和热性能。 BNNP在弹性体中的均匀稳定分散是成功应用复合材料的关键。本文中,我们提出了一种使用胶乳混合方法将具有羟基官能团的完全剥落的BNNP掺入弹性体中的简便且易于工业化的方法。制备的BNNP高度分散在各种溶剂中,它们的大小只有几微米,可以保留其面内结构。所提出的环保,成本有效,可扩展的制备方法显示出提高弹性体纳米复合材料性能的巨大潜力。具体地说,即使在低载荷下,将BNNPs掺入弹性体基体也能显着提高弹性模量和拉伸强度。这归因于BNNP与弹性体基质的界面键合增强。此外,弹性体中分散良好的BNNP具有出色的导热性和透气性。

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