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Electrochemical Synthesis of Magnesium Hexaboride by Molten Salt Technique

机译:熔融盐技术电化学合成六硼化镁

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The present work reports electrochemical synthesis of MgB6from molten salts using the precursor consists of LiF–B2O3–MgCl2. An attempt has been made to synthesize metastable phase MgB6crystal by electrolysis method. DTA/TGA studies were made to determine the eutectic point of the melt and it was found to be around 900°C. The electrolysis was performed at 900°C under argon atmosphere, at current density of 1.5 A/cm2. The electrodeposited crystals were examined using XRD, SEM, and XPS. From the above studies, the electrochemical synthesis method for hypothetical MgB6from chloro-oxy-fluoride molten salt system is provided. Mechanism for the formation of magnesium hexaboride is discussed.
机译:本工作报道了使用LiF–B2O3–MgCl2组成的前体从熔融盐中电化学合成MgB6。已经尝试通过电解方法合成亚稳相MgB6晶体。进行了DTA / TGA研究以确定熔体的共晶点,发现其约为900°C。电解在900℃,氩气氛下,电流密度为1.5 A / cm 2下进行。使用XRD,SEM和XPS检查电沉积的晶体。通过以上研究,提供了由氯-氟-氟化物熔融盐体系合成假设的MgB6的电化学方法。讨论了六硼化镁的形成机理。

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