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Phase Evolution and Stability of Aluminum Titanate Prepared by Solid -State Route and Solution Combustion Routeudud

机译:固态途径和溶液燃烧途径制备的钛酸铝的相演化和稳定性 ud ud

摘要

Aluminum titanate (Al2TiO5) powder was synthesized using two different route, namely, solid-state route and solution combustion route. In solid-state route, two different types (micron and nano-size powder) of Al2O3 precursor powder was used. Phase evolution and powder morphology were investigated by X-ray diffraction method and Field emission scanning electron microscope (FESEM) respectively. In case of large particle Al2O3 precursor powder, Al2TiO5 (AT) phase was formed at 1500oC with a yield of 97%. Whereas using nano-Al2O3 precursor powder, AT phase was formed at 1350oC with a yield of 91% and almost phase pure powder can be prepared at 1500oC. Average particle size of the AT powder was 11 µm (using large particle Al2O3) and 10.2 µm (using nano-size Al2O3) for calcination at 1500oC. AT powder was also synthesized by citrate-nitrate solution combustion method. The molar ratio of metal (Al:Ti) and citric acid was varied to get a uniform and complete combustion. A significant amount Al2TiO5 phase was formed at 1350°C. The stability of the solid state route prepared AT powder was investigated by keeping the powder at 1150°C/6hr. It was observed from the XRD analysis that only 40% AT-phase was retained in samples prepared with micron size Al2O3, but, in case of sample prepared using nano size Al2O3, 93% AT-phase was retained.
机译:钛酸铝(Al2TiO5)粉末是通过两种不同的途径合成的,即固态途径和溶液燃烧途径。在固态途径中,使用了两种不同类型(微米和纳米级粉末)的Al2O3前体粉末。用X射线衍射法和场发射扫描电子显微镜(FESEM)分别研究了相变和粉末形貌。如果是大颗粒的Al2O3前体粉末,则在1500oC形成Al2TiO5(AT)相,产率为97%。而使用纳米Al2O3前体粉末,则在1350oC形成AT相,产率为91%,在1500oC几乎可以制备纯相粉末。 AT粉末的平均粒径为11 µm(使用大颗粒Al2O3)和10.2 µm(使用纳米级Al2O3),以便在1500oC下煅烧。还通过柠檬酸-硝酸盐溶液燃烧法合成了AT粉末。改变金属(Al:Ti)和柠檬酸的摩尔比以获得均匀且完全的燃烧。在1350℃下形成大量的Al 2 TiO 5相。通过将粉末保持在1150℃/ 6小时来研究固态路线制备的AT粉末的稳定性。从XRD分析观察到,用微米尺寸的Al 2 O 3制备的样品中仅保留40%的AT相,但是,使用纳米尺寸的Al 2 O 3制备的样品中,保留了93%的AT相。

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    Singh Vidisha;

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  • 年度 2015
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