Room-temperature synthesis of χ-Al2O3 and ruby (α-Cr:Al2O3)

2018 
In this work, we present a unique crystal growth synthesis of χ-Al2O3 accompanied with α-Cr:Al2O3 at room temperature. Raman spectroscopy and additions of Cr2O3 are key to identifying α-Cr:Al2O3 in trace amounts by the room temperature synthesis of ruby (α-Cr:Al2O3). The presence of this phase is further confirmed with HRTEM. The raw materials are pseudoboehmite and Cr2O3 that are treated mechano-chemically for the successful synthesis of ruby and χ-Al2O3. A thermal analysis approach is provided to explain the significant temperature reduction for the complete transformation to α-Cr:Al2O3 during annealing. The α-Cr:Al2O3 synthesized at room temperature acts as the seed or hetero site for nucleation and is responsible for a temperature drop of approximately 200 °C (up to 867 °C). This material is ideal for optics, photonics, defense, energy storage and harvesting, among other strategic applications.
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