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A solid-state process for formation of boron nitride nanotubes

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Authors

Chen, Ying
Chadderton, Lewis
Fitz Gerald, John
Williams, James S

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American Institute of Physics

Abstract

The formation of boron nitride (BN) nanotubes via a solid-state process is demonstrated. The nanotubes are produced by first ball-milling hexagonal BN powder to generate highly disordered or amorphous nanostructures, followed by annealing at temperatures up to 1300 °C. The annealing leads to the nucleation and growth of hexagonal BN nanotubes of both cylindrical and bamboo-like morphology. Unlike previous mechanisms for nanotube formation, the reordering and solid-state growth process of our nanotubes does not involve deposition from the vapor phase nor chemical reactions

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Applied Physics Letters 74.20 (1999): 2960-2962

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