Formation of ceramic bodies using submicron msno3 (m = ba, zn, ca) particles and evaluation of their electric behaviour in different atmospheres

IF 0.9 4区 材料科学 Q3 MATERIALS SCIENCE, CERAMICS
Y. Ochoa-Muñoz, M. Álvarez‐Láinez, J. Rodríguez-Páez, D. Mejía
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Abstract

In this work, the most suitable conditions were determined for shaping ceramic bodies of the MSnO3 system (M = Ba, Zn, Ca), using submicron particles of these perovskites synthesized by a chemical route. For this, the rheological behaviours of colloidal suspensions of the MSnO3 powders (M = Ba, Zn, Ca) were studied considering the effects of solid content and concentration of ammonium polyacrylate (APA). The results indicated that the optimal solids contents for stable suspensions in each system were 13.8 (BaSnO3), 19.4 (ZnSnO3), and 21.5 vol.% (CaSnO3). The suspensions containing BaSnO3 and ZnSnO3 showed large reductions in viscosity, approximately 87%, when APA (0.5-0.8wt.%) was added. In contrast, the CaSnO3 suspension did not show significant changes after addition of APA. Slip casting of the stable suspensions allowed formation of porous green bodies, which were subsequently sintered in the range 1000-1500 ?C. Considering their potential use as gas sensors, a preliminary study of the sintered bodies showed high detection responses (Ra/Rg) toward 80 ppm reducing gas at operating temperature of 270 ?C, especially ZnSnO3 to acetone and ethanol vapours, BaSnO3 to ethanol vapour and CaSnO3 to toluene vapour.
亚微米msno3 (m = ba, zn, ca)颗粒陶瓷体的形成及其在不同气氛下的电行为评价
在这项工作中,确定了最合适的条件来塑造MSnO3体系(M = Ba, Zn, Ca)的陶瓷体,使用这些钙钛矿的亚微米颗粒通过化学途径合成。为此,考虑固体含量和聚丙烯酸铵(APA)浓度的影响,研究了MSnO3粉末(M = Ba, Zn, Ca)的胶体悬浮液的流变行为。结果表明,各体系稳定悬浮液的最佳固相含量分别为13.8 vol.% (BaSnO3)、19.4 vol.% (ZnSnO3)和21.5 vol.% (CaSnO3)。当添加APA (0.5-0.8wt.%)时,含有BaSnO3和ZnSnO3的悬浮液的粘度降低了约87%。相比之下,添加APA后CaSnO3悬液无明显变化。稳定悬浮液的滑移铸造可以形成多孔的绿体,随后在1000-1500℃范围内烧结。考虑到它们作为气体传感器的潜力,对烧结体的初步研究表明,在270℃的工作温度下,对80 ppm的还原性气体的检测响应(Ra/Rg)很高,特别是ZnSnO3对丙酮和乙醇蒸气,BaSnO3对乙醇蒸气和CaSnO3对甲苯蒸气的检测响应(Ra/Rg)。
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来源期刊
Processing and Application of Ceramics
Processing and Application of Ceramics MATERIALS SCIENCE, CERAMICS-
CiteScore
1.90
自引率
9.10%
发文量
14
审稿时长
10 weeks
期刊介绍: Information not localized
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