Presentation Information

[17a-K102-5]Low-temperature synthesis of highly crystalline h-BN nanocrystals

〇(M1)Hayate Hirao1, Hiroyo Segawa2, Chen Jun2, Ryosuke Matsubara1, Takashi Uchino1 (1.Kobe Univ., 2.NIMs)

Keywords:

Hexagonal boron nitride,Two-dimensional layered materials,catalyst

Hexagonal boron nitride (h-BN) nanocrystals have attracted significant attention due to their potential applications in adsorbent-based water purification and dehydrogenation catalysis, owing to their porous nature and edge properties. High crystallinity is desirable in h-BN nanocrystals for optimal performance. Generally, highly crystalline h-BN is produced by high-temperature calcination at temperatures exceeding 1500 °C. However, high-temperature calcination leads to crystal growth and bulkization, making it unsuitable for obtaining nanocrystals. Therefore, in this study, we attempted to synthesize highly crystalline h-BN nanocrystals at a lower temperature of 1000 °C.

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