锆
材料科学
碳热反应
立方氧化锆
陶瓷
碳化锆
碳化物
化学计量学
冶金
化学工程
物理化学
化学
工程类
作者
Anastasia Kucheryavaya,Zoltán Lenčéš,Pavol Šajgalı́k,Harald Harmuth
摘要
Abstract Zirconium oxycarbides and zirconium oxycarbonitrides are high‐temperature ceramic materials with great potential for applications in advanced technologies due to their good refractoriness, mechanical and thermoelectric properties, and corrosion resistance. The properties of ZrCO(N) materials strongly depend on their composition. However, the stoichiometry of stable ZrCO(N) compounds, synthesis chemistry, and thermodynamics of the proceeding reactions require clarification. This review comprehensively interprets data for ZrCO and ZrCON ceramics, including studies that may not have been addressed in prior reviews. It summarizes the state‐of‐the‐art synthesis procedures involving reactions between commonly used zirconia, zirconium carbide, and carbon black, along with other zirconium sources widely used in the last few decades for the preparation of ZrCO(N) materials. The controversial reaction mechanisms of carbothermal reduction of zirconia and the role of CO gas in this process are discussed. The properties of ZrCO and ZrCON and their possible applications are also summarized.
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