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首页> 外文期刊>International Journal of Quantum Chemistry >Hydrothermal synthesis of the perovskite manganites Pr0.5Sr0.5MnO3 and Nd0.5Sr0.5MnO3 and alkali-earth manganese oxides CaMn2O4, 4H-SrMnO3, and 2H-BaMnO3
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Hydrothermal synthesis of the perovskite manganites Pr0.5Sr0.5MnO3 and Nd0.5Sr0.5MnO3 and alkali-earth manganese oxides CaMn2O4, 4H-SrMnO3, and 2H-BaMnO3

机译:水热法合成钙钛矿锰矿Pr0.5Sr0.5MnO3和Nd0.5Sr0.5MnO3以及碱土金属锰氧化物CaMn2O4、4H-SrMnO3和2H-BaMnO3

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We report the synthesis of the perovskite manganites Pr0.5Sr0.5MnO3 and Nd0.5Sr0.5MnO3 using mild hydrothermal conditions. Both are formed as polycrystalline powders from solutions of metal salts in aqueous potassium hydroxide at 240 ° C, and crystallise as a tetragonal polymorph (space group I4/mcm). Scanning electron microscopy shows both materials to contain cuboid-shaped crystallites several microns in dimension, and the average particle size is verified by light scattering measurements. We also report the first hydrothermal synthesis of 2H-BaMnO3 and 4H-SrMnO3, and the first subcritical hydrothermal synthesis of CaMn2O4 (marokite). Despite the formation of these alkali-earth manganese oxides at 240 ° C, we have been unable to isolate rare-earth manganese oxides LnMnO(3) using similar conditions. We discuss the formation of perovskite manganites in hydrothermal reactions by relating our new results to those manganites already reported to form under hydrothermal conditions, and rationalise the trends seen by considering tolerance factor of the perovskite and the variance of the A-site metal radius. 2005 Elsevier Inc. All rights reserved.
机译:我们报告了使用温和的水热条件合成钙钛矿锰矿Pr0.5Sr0.5MnO3和Nd0.5Sr0.5MnO3。两者都是由金属盐在240℃的氢氧化钾水溶液中形成的多晶粉末。 C,并结晶为四边形的多晶型物(空间群I4 / mcm)。扫描电子显微镜显示两种材料均包含尺寸为几微米的长方体形微晶,并且通过光散射测量来验证平均粒径。我们还报告了2H-BaMnO3和4H-SrMnO3的第一个水热合成,以及CaMn2O4(泡石)的第一个亚临界水热合成。尽管在240℃下形成了这些碱土金属锰氧化物。 C,我们无法使用类似的条件分离稀土锰氧化物LnMnO(3)。我们通过将我们的新结果与已经报道的在水热条件下形成的锰铁矿相关联,讨论了在水热反应中钙钛矿型锰铁矿的形成,并通过考虑钙钛矿的耐受因子和A位金属半径的变化来合理化趋势。 2005 Elsevier Inc.保留所有权利。

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