Gautam Chandkiram, Chelliah Selvam
Advanced Glass and Glass Ceramics Research Laboratory, Department of Physics, University of Lucknow Lucknow 226007 Uttar Pradesh India.
Department of Pharmaceutical Sciences, Texas Southern University Houston USA
RSC Adv. 2021 Sep 23;11(50):31284-31327. doi: 10.1039/d1ra05727h. eCollection 2021 Sep 21.
The exfoliation of two-dimensional (2D) hexagonal boron nitride nanosheets (h-BNNSs) from bulk hexagonal boron nitride (h-BN) materials has received intense interest owing to their fascinating physical, chemical, and biological properties. Numerous exfoliation techniques offer scalable approaches for harvesting single-layer or few-layer h-BNNSs. Their structure is very comparable to graphite, and they have numerous significant applications owing to their superb thermal, electrical, optical, and mechanical performance. Exfoliation from bulk stacked h-BN is the most cost-effective way to obtain large quantities of few layer h-BN. Herein, numerous methods have been discussed to achieve the exfoliation of h-BN, each with advantages and disadvantages. Herein, we describe the existing exfoliation methods used to fabricate single-layer materials. Besides exfoliation methods, various functionalization methods, such as covalent, non-covalent, and Lewis acid-base approaches, including physical and chemical methods, are extensively described for the preparation of several h-BNNS derivatives. Moreover, the unique and potent characteristics of functionalized h-BNNSs, like enhanced solubility in water, improved thermal conductivity, stability, and excellent biocompatibility, lead to certain extensive applications in the areas of biomedical science, electronics, novel polymeric composites, and UV photodetectors, and these are also highlighted.
由于二维(2D)六方氮化硼纳米片(h-BNNSs)具有迷人的物理、化学和生物学特性,从块状六方氮化硼(h-BN)材料中剥离出h-BNNSs引起了人们的浓厚兴趣。众多的剥离技术为获取单层或少数层h-BNNSs提供了可扩展的方法。它们的结构与石墨非常相似,并且由于其卓越的热、电、光和机械性能而具有许多重要应用。从块状堆叠的h-BN中剥离是获得大量少数层h-BN最具成本效益的方法。在此,已经讨论了许多实现h-BN剥离的方法,每种方法都有其优缺点。在此,我们描述了用于制备单层材料的现有剥离方法。除了剥离方法外,还广泛描述了各种功能化方法,如共价、非共价和路易斯酸碱方法,包括物理和化学方法,用于制备几种h-BNNS衍生物。此外,功能化h-BNNSs独特而强大的特性,如在水中溶解度的提高、热导率的改善、稳定性和优异的生物相容性,使其在生物医学科学、电子学、新型聚合物复合材料和紫外光探测器等领域有一定的广泛应用,这些也得到了强调。