Boron nitride nanostructures formed by ultra-high-repetition rate laser ablation

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Abstract

High-repetition rate (2 × 105 pulses/s), short-pulse (60 ps) laser was used for the first time for ablation of a hexagonal boron nitride (BN) target at nitrogen pressure of ∼ 100 Torr in search for the optimum conditions of BN nanostructure formation. High-resolution transmission electron microscopy, electron energy loss spectroscopy, and energy-filtered TEM analysis of the produced nanomaterial revealed a variety of BN nanostructures formed due to the interaction of BN plume with nitrogen ambient. Nanorods, multi-layered nanocages, double-layered 'nanohorns', and multi- and single-walled BN nanotubes were discovered in the product. BN nanotubes exhibiting various diameters and numbers of layers, including single-walled nanotubes, were frequently assembled in bundles. © 2003 Elsevier Science B.V. All rights reserved.

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Golberg, D., Rode, A., Bando, Y., Mitome, M., Gamaly, E., & Luther-Davies, B. (2003). Boron nitride nanostructures formed by ultra-high-repetition rate laser ablation. Diamond and Related Materials, 12(8), 1269–1274. https://doi.org/10.1016/S0925-9635(03)00042-6

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