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首页> 外文期刊>Bulletin of the Korean Chemical Society >Synthesis of Alumina-Grafted Manganese Oxide Particles Using Surfactants through Coprecipitation Method and Their Thermal Properties
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Synthesis of Alumina-Grafted Manganese Oxide Particles Using Surfactants through Coprecipitation Method and Their Thermal Properties

机译:表面活性剂共沉淀法合成氧化铝接枝氧化锰及其热性能

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摘要

Alumina particles were grafted onto the surface of manganese oxide particles via the coprecipitation process using surfactant and cosurfactant. The phase of Mn/Al salts (Phase I) and the phase of precipitation agent (Phase II) were prepared in aqueous surfactant solution, separately. Phase II was added into Phase I and the reaction was performed to form the precursors of composites through hydrogen bonding between Mn(OH)2 and Al(OH)3 prepared by the reaction of Mn/Al salts with the precipitation agent. The alumina-grafted manganese oxide particles were obtained as a final product after calcination. The concentrations of Al salt and surfactant were varied to investigate their effects on the formation and the crystallinity of composites. In addition, the crystal structure of products could be controlled by changing the calcination temperature. Through thermal analyses, it was found that the thermal stability of manganese oxide was improved by the introduction of alumina on its surface.
机译:通过使用表面活性剂和助表面活性剂的共沉淀工艺将氧化铝颗粒接枝到氧化锰颗粒的表面。分别在表面活性剂水溶液中制备Mn / Al盐相(阶段I)和沉淀剂相(阶段II)。将相II添加到相I中,并通过Mn(Al)2与Al / OH盐与沉淀剂反应制得的Mn(OH)2和Al(OH)3之间的氢键进行反应,以形成复合物的前体。煅烧后获得氧化铝接枝的氧化锰颗粒作为最终产物。改变铝盐和表面活性剂的浓度以研究它们对复合物的形成和结晶度的影响。另外,可以通过改变煅烧温度来控制产物的晶体结构。通过热分析,发现通过在其表面上引入氧化铝,提高了锰氧化物的热稳定性。

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