Abstract The oxidation behaviors of Ti3AlC2 and Ti3Al0.8Sn0.2C2 powders in air over the temperature range from 450 to 900 ℃ have been comprehensively compared. First-principles calculations suggest that Sn doping… Click to show full abstract
Abstract The oxidation behaviors of Ti3AlC2 and Ti3Al0.8Sn0.2C2 powders in air over the temperature range from 450 to 900 ℃ have been comprehensively compared. First-principles calculations suggest that Sn doping can decrease the oxidation resistance of Ti3AlC2 powders due to its weakening effect on the Ti-Al bonds. There are three stages of both powders depending on the oxidation temperature, in which the oxidation behaviors vary enormously with specific morphologies. Based on this, real physical picture (RPP) model is adopted to discuss the oxidation kinetics, which further verifies the accelerating effect of Sn doping on the oxidation process of Ti3AlC2 powders.
               
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