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Copper-containing ceramic precursor synthesis: Solid-state transformations and materials technology

机译:含铜陶瓷前驱体合成:固态转变和材料技术

摘要

Three copper systems with relevance to materials technology are discussed. In the first, a CuS precursor, Cu4S1O (4-methylpyridine)(sub 4)- (4-MePy), was prepared by three routes: reaction of Cu2S, reaction of CuBr-SMe2, and oxidation of copper powder with excess sulfur in 4-methylpyridine by sulfur. In the second, copper powder was found to react with excess thiourea (H2NC(S)NH2) in 4-methylpyridine to produce thiocyanate (NCS(-)) complexes. Three isolated and characterized compounds are: Cu(NCS)(4-MePy)(sub 2), a polymer, (4-MePy-H)(Cu(NCS)(sub 3)(4-MePy)(sub 2)), a salt, and t-Cu(NCS)(sub 2)(4-MePy)(sub 4). Finally, an attempt to produce a mixed-metal sulfide precursor of Cu and Ga in N-methylimidazole (N-MeIm) resulted in the synthesis of a Cu-containing polymer, Cu(SO4)(N-MeIm). The structures are presented; the chemistry will be briefly discussed in the context of preparation and processing of copper-containing materials for aerospace applications.
机译:讨论了与材料技术相关的三种铜系统。首先,通过三种途径制备CuS前体Cu4S10(4-甲基吡啶)(sub 4)-(4-MePy):Cu2S反应,CuBr-SMe2反应以及铜粉与过量硫的氧化。 4-甲基吡啶被硫磺化。第二,发现铜粉与4-甲基吡啶中的过量硫脲(H2NC(S)NH2)反应生成硫氰酸盐(NCS(-))配合物。三种分离出的特征化合物为:Cu(NCS)(4-MePy)(sub 2),聚合物,(4-MePy-H)(Cu(NCS)(sub 3)(4-MePy)(sub 2)) ,盐和t-Cu(NCS)(sub 2)(4-MePy)(sub 4)。最后,尝试在N-甲基咪唑(N-MeIm)中生产Cu和Ga的混合金属硫化物前体导致了含铜聚合物Cu(SO4)(N-MeIm)的合成。介绍了结构;将在航空航天应用的含铜材料的制备和加工过程中简要讨论化学过程。

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