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新型功能化氮化硼纳米片的辐射诱导氧自由基法制备及其在聚合物纳米复合材料中的增强作用。

Novel Functionalized Boron Nitride Nanosheets Achieved by Radiation-Induced Oxygen Radicals and Their Enhancement for Polymer Nanocomposites.

机构信息

Hubei Key Laboratory of Radiation Chemistry and Functional Materials, Hubei University of Science and Technology, Xianning 437100, China.

School of Nuclear Technology and Chemistry & Biology, Hubei University of Science and Technology, Xianning 437100, China.

出版信息

Molecules. 2023 Apr 13;28(8):3444. doi: 10.3390/molecules28083444.

Abstract

Boron nitride nanosheets (BNNSs) exfoliated from hexagonal boron nitride (h-BN) show great potential in polymer-based composites due to their excellent mechanical properties, highly thermal conductivity, and insulation properties. Moreover, the structural optimization, especially the surface hydroxylation, of BNNSs is of importance to promote their reinforcements and optimize the compatibility of its polymer matrix. In this work, BNNSs were successfully attracted by oxygen radicals decomposed from di-tert-butylperoxide (TBP) induced by electron beam irradiation and then treated with piranha solution. The structural changes of BNNSs in the modification process were deeply studied, and the results demonstrate that the as-prepared covalently functionalized BNNSs possess abundant surface hydroxyl groups as well as reliable structural integrity. Of particular importance is that the yield rate of the hydroxyl groups is impressive, whereas the usage of organic peroxide and reaction time is greatly reduced due to the positive effect of the electron beam irradiation. The comparisons of PVA/BNNSs nanocomposites further indicate that the hydroxyl-functionalized BNNSs effectively promote mechanical properties and breakdown strength due to the enhanced compatibility and strong two-phase interactions between nanofillers and the polymer matrix, which further verify the application prospects of the novel route proposed in this work.

摘要

氮化硼纳米片(BNNSs)从六方氮化硼(h-BN)剥离,由于其优异的机械性能、高热导率和绝缘性能,在聚合物基复合材料中具有巨大的应用潜力。此外,BNNSs 的结构优化,特别是表面的羟基化,对于促进其增强和优化其聚合物基体的相容性是很重要的。在这项工作中,BNNSs 成功地被电子束辐照分解的过氧化二叔丁基(TBP)产生的氧自由基吸引,然后用重铬酸和硫酸的混合溶液(也称为“piranha 溶液”)处理。深入研究了 BNNSs 在修饰过程中的结构变化,结果表明,所制备的共价功能化 BNNSs 具有丰富的表面羟基和可靠的结构完整性。特别重要的是,由于电子束辐照的积极影响,羟基的产率令人印象深刻,而有机过氧化物的使用和反应时间大大减少。PVA/BNNSs 纳米复合材料的比较进一步表明,由于纳米填料与聚合物基体之间的相容性增强和强的两相相互作用,羟基功能化 BNNSs 有效地提高了力学性能和击穿强度,进一步验证了本工作中提出的新途径的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4890/10141363/3dd4e01c7eaa/molecules-28-03444-g001.jpg

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