Abstract:
A hexagonal α-Al
2O
3 with good crystallinity and regular morphology was prepared at lower calcination temperature by using boehmite (AlOOH) as precursor and AlF
3 seed as additive.The possible mechanisms were investigated by DSC-TG-MS analysis under the condition of AlF
3 seed coefficient 2%, which indicates that a transition compound (Al-O-F) promotes the nucleation phase transition of α-Al
2O
3 through gas-solid reaction, and releases HF simultaneously. Furthermore, the effects of AlF
3 coefficient and calcination temperature (
T) on the phase, morphology, size, and specific surface area were investigated. Results show that light AlF
3 seeds can enhance the crystallinity of α-Al
2O
3. When the AlF
3 coefficient increases from 0.5% to 10%, the hexagonal-shaped structure becomes clear, but its size increases and its specific surface area decreases. Boehmite can completely change into high-crystallinity, hexagonal-shaped α-Al
2O
3 under the best condition of
T=850℃, AlF
3 seed coefficient 2%, and constant calcination time of 4 h.