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Sol–gel synthesis and sintering of submicronic copper molybdate (α-CuMoO4) powders

机译:亚微米钼酸铜(α-CuMoO4)粉末的溶胶-凝胶合成和烧结

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摘要

A sol–gel method was proposed to prepare copper II molybdate α-CuMoO4 powders. A gel was first obtained via the polymerizable complex method, using citric acid as complexing and polymerizing agent, dried at 120 °C and decomposed at 300 °C. A calcination in the temperature range 400–500 °C for 2 h led to the pure phase α-CuMoO4. The different powders obtained were characterized by X ray diffraction analysis and by transmission (TEM) and scanning (SEM) electron microscopies. Ceramics were prepared using conventional sintering and spark plasma sintering (SPS) techniques. A maximal relative density of 94.8% was reached after conventional sintering at 520 °C for 2 h. In the case of SPS, the densification was optimized by varying the temperature, the time and the applied pressure. Higher densities, up to 98.7%, were obtained at very low temperature, i.e., 300 °C, for 5 min only under a pressure of 225 MPa.
机译:提出了一种溶胶-凝胶法制备钼酸铜IIα-CuMoO4粉末。首先通过可聚合的络合方法,使用柠檬酸作为络合和聚合剂获得凝胶,在120℃下干燥并在300℃下分解。在400–500°C的温度范围内煅烧2 h,得到纯相α-CuMoO4。通过X射线衍射分析以及通过透射(TEM)和扫描(SEM)电子显微镜表征所获得的不同粉末。使用常规烧结和火花等离子体烧结(SPS)技术制备陶瓷。在520℃下常规烧结2小时后,最大相对密度达到94.8%。对于SPS,通过改变温度,时间和施加的压力来优化致密化。仅在225 MPa的压力下,在非常低的温度(即300°C)下持续5分钟,可获得更高的密度,最高可达98.7%。

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