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氮化硼纳米管的性质与应用

Properties and applications of boron nitride nanotubes.

作者信息

Turhan Emine Ayşe, Pazarçeviren Ahmet Engin, Evis Zafer, Tezcaner Ayşen

机构信息

Department of Material Science and Engineering, Koç University, İstanbul, Turkey.

Department of Engineering Sciences, Middle East Technical University, Ankara, Turkey.

出版信息

Nanotechnology. 2022 Mar 30;33(24). doi: 10.1088/1361-6528/ac5839.

Abstract

Nanomaterials have received increasing attention due to their controllable physical and chemical properties and their improved performance over their bulk structures during the last years. Carbon nanostructures are one of the most widely searched materials for use in different applications ranging from electronic to biomedical because of their exceptional physical and chemical properties. However, BN nanostructures surpassed the attention of the carbon-based nanostructure because of their enhanced thermal and chemical stabilities in addition to structural similarity with the carbon nanomaterials. Among these nanostructures, one dimensional-BN nanostructures are on the verge of development as new materials to fulfill some necessities for different application areas based on their excellent and unique properties including their tunable surface and bandgap, electronic, optical, mechanical, thermal, and chemical stability. Synthesis of high-quality boron nitride nanotubes (BNNTs) in large quantities with novel techniques provided greater access, and increased their potential use in nanocomposites, biomedical fields, and nanodevices as well as hydrogen uptake applications. In this review, properties and applications of one-dimensional BN (1D) nanotubes, nanofibers, and nanorods in hydrogen uptake, biomedical field, and nanodevices are discussed in depth. Additionally, research on native and modified forms of BNNTs and also their composites with different materials to further improve electronic, optical, structural, mechanical, chemical, and biological properties are also reviewed. BNNTs find many applications in different areas, however, they still need to be further studied for improving the synthesis methods and finding new possible future applications.

摘要

在过去几年中,纳米材料因其可控的物理和化学性质以及相较于其块状结构而言得到改善的性能而受到越来越多的关注。碳纳米结构是从电子到生物医学等不同应用中研究最为广泛的材料之一,因为它们具有卓越的物理和化学性质。然而,由于硼氮纳米结构除了与碳纳米材料结构相似外,还具有增强的热稳定性和化学稳定性,因此其受到的关注超过了碳基纳米结构。在这些纳米结构中,一维硼氮纳米结构基于其优异且独特的性质,包括可调节的表面和带隙、电子、光学、机械、热和化学稳定性,正处于作为满足不同应用领域某些需求的新材料的发展边缘。采用新技术大量合成高质量的氮化硼纳米管(BNNTs)提供了更多的途径,并增加了它们在纳米复合材料、生物医学领域、纳米器件以及氢吸收应用中的潜在用途。在这篇综述中,将深入讨论一维硼氮(1D)纳米管、纳米纤维和纳米棒在氢吸收、生物医学领域和纳米器件方面的性质和应用。此外,还综述了对天然和改性形式的BNNTs以及它们与不同材料的复合材料的研究,以进一步改善电子、光学、结构、机械、化学和生物学性质。BNNTs在不同领域有许多应用,但仍需要进一步研究以改进合成方法并寻找新的未来可能应用。

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