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首页> 外文期刊>Nanoscale >Advances in 2D boron nitride nanostructures: nanosheets, nanoribbons, nanomeshes, and hybrids with graphene
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Advances in 2D boron nitride nanostructures: nanosheets, nanoribbons, nanomeshes, and hybrids with graphene

机译:先进的2 d氮化硼纳米结构:nanosheets、nanoribbons nanomeshes和混合动力车与石墨烯

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摘要

The recent surge in graphene research has stimulated interest in the investigation of various 2-dimensional (2D) nanomaterials. Among these materials, the 2D boron nitride (BN) nanostructures are in a unique position. This is because they are the isoelectric analogs to graphene structures and share very similar structural characteristics and many physical properties except for the large band gap. The main forms of the 2D BN nanostructures include nanosheets (BNNSs), nanoribbons (BNNRs), and nanomeshes (BNNMs). BNNRs are essentially BNNSs with narrow widths in which the edge effects become significant; BNNMs are also variations of BNNSs, which are supported on certain metal substrates where strong interactions and the lattice mismatch between the substrate and the nanosheet result in periodic shallow regions on the nanosheet surface. Recently, the hybrids of 2D BN nanostructures with graphene, in the form of either in-plane hybrids or inter-plane heterolayers, have also drawn much attention. In particular, the BNNS-graphene heterolayer architectures are finding important electronic applications as BNNSs may serve as excellent dielectric substrates or separation layers for graphene electronic devices. In this article, we first discuss the structural basics, spectroscopic signatures, and physical properties of the 2D BN nanostructures. Then, various top-down and bottom-up preparation methodologies are reviewed in detail. Several sections are dedicated to the preparation of BNNRs, BNNMs, and BNNS-graphene hybrids, respectively. Following some more discussions on the applications of these unique materials, the article is concluded with a summary and perspectives of this exciting new field.
机译:最近激增的石墨烯的研究激发兴趣的调查各种二维(2 d)纳米材料。这些材料,2 d氮化硼(BN)纳米结构在一个独特的位置。因为它们的等电点类似物石墨烯结构和分享非常相似结构特点和许多物理除了大带隙性质。2 d BN纳米结构包括的主要形式窄宽度的边缘效应成为重要的;BNNSs,支持对某些金属基质强相互作用和在哪里衬底和晶格不匹配nanosheet导致周期性的浅水区域nanosheet表面。与石墨烯,2 d BN纳米结构形式平面混合动力车或inter-planeheterolayers也备受关注。特别BNNS-graphene heterolayer架构发现重要的电子应用程序作为BNNSs可以作为优秀电介质基板或分离层石墨烯电子设备。首先讨论的结构基础,光谱特征和物理性质的2 d BN纳米结构。自顶向下和自底向上方法做准备详细综述了。专门用来制备BNNRs BNNMs,分别BNNS-graphene混合动力车。一些应用程序的讨论这些独特的材料,本文总结道总结和观点的兴奋新领域。

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