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Combustion synthesis of transition metal carbosulfides

机译:过渡金属碳硫化物的燃烧合成

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The combustion synthesis of ternary and quaternary carbosulfides of the transition metals was investigated to obtain high-purity materials to be tested as solid lubricants in high-temperature environments. The main carbosulfide formation mechanisms have been clarified in the case of the technologically interesting tantalum carbosulfide, enabling the preparation of reaction products with controlled purity. The formation of molten tantalum sulfide as an intermediate product was found to play a key role for obtaining a homogeneous reaction product, and the presence of excess carbon reduced the oxygen content of the carbosulfide. However, the higher the overall carbon contents, the higher is the amount of carbide impurities in the reaction products. Use of iodine or hexachlorobenzene as a catalyzer minimized the need of excess sulfur in the raw powder mixture, reduced the amount of carbide impurities, and contributed to the homogenization of the reaction products. (C) 1998 Academic Press. [References: 15]
机译:对过渡金属的三价和四价碳硫化物的燃烧合成进行了研究,以获得高纯度的材料作为高温环境中的固体润滑剂进行测试。在技​​术上令人关注的钽硫化碳的情况下,已经阐明了主要的硫化碳的形成机理,从而能够制备具有可控纯度的反应产物。发现熔融的硫化钽作为中间产物的形成对于获得均相反应产物起关键作用,并且过量碳的存在降低了碳硫化物的氧含量。但是,总碳含量越高,反应产物中碳化物杂质的含量越高。使用碘或六氯苯作为催化剂可最大程度地减少原料粉末混合物中过量硫的需要,减少碳化物杂质的量,并有助于反应产物的均质化。 (C)1998年学术出版社。 [参考:15]

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