The shape evolution from uniform triangular boron nitride nanoplates of rhombohedral phase (r-BN) to hexagonal r-BN nanoplates was achieved through a simple calcination process in flowing N2 at 1000 °C for 8 h. The average thickness of the triangular and hexagonal r-BN nanoplates is similar (∼50 nm), while their average edge sizes are 360 and 320 nm, and their intense emission bands are centered at 316 and 297 nm (λex = 200 nm), respectively. TGA analysis results reveal that hexagonal r-BN nanoplates have superior thermal stability compared with the triangular nanoplates especially above 800 °C under ambient atmosphere. The possible mechanism of the thermally induced conversion from triangular to hexagonal r-BN nanoplates is discussed.
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Li et al. (2009) studied this question.
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