首页> 外文期刊>Journal of Organometallic Chemistry >OLIGOMERS WITH SILICON AND TRANSITION METAL GROUPS - THERMOLYSIS OF POLY[1,1'-BIS( DIORGANOSILYLETHYNYL)FERROCENES] AND POLY[((DIORGANOSILYLENE) DIACETYLENE) DICOBALTHEXACARBONYLS] TO GIVE IRON SILICIDE- AND COBALT SILICIDE-BASED CERAMICS
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OLIGOMERS WITH SILICON AND TRANSITION METAL GROUPS - THERMOLYSIS OF POLY[1,1'-BIS( DIORGANOSILYLETHYNYL)FERROCENES] AND POLY[((DIORGANOSILYLENE) DIACETYLENE) DICOBALTHEXACARBONYLS] TO GIVE IRON SILICIDE- AND COBALT SILICIDE-BASED CERAMICS

机译:含硅和过渡金属基团的低聚物-聚[1,1'-BIS(二有机硅基乙炔基)二茂铁]和聚[[(二有机硅基乙烯)二苯乙炔)二碳杂蒽的热解生成硅铁和钴硅酸盐

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The pyrolysis of transition-metal-containing organosilicon-diacetylene oligomers was performed in order to prepare multiphase ceramics. Poly[1,1'-bis(diorganosilylethynyl)ferrocenes] (2) were pyrolysed, under argon, up to 1350 degrees C to give FexSiyCz phases with good yields, owing to the incorporation of the cyclopentadiene groups in the carbon matrix and the participation of nearly all silicon and iron in the ceramic residue. The pyrolysis of poly[{(diorganosilylene) diacetylene} dicobalt hexacarbonyls] (3) at 1350 degrees C gave Co2Si and graphite-like carbon. Evolution of part of the carbon monoxide of 3 in the early stage of the pyrolysis (100 degrees C) showed that the cross-linking of the diacetylene units was induced by reactive cobalt species. Furthermore, at higher temperatures (200-500 degrees C), cobalt clusters catalysed the ceramic formation. Co2Si was shown to result from the reaction of SiC with Co above 1000 degrees C, both formed during the pyrolysis process. Finally, at 1100 degrees C, a carboreduction reaction led to the elimination of the oxygen incorporated in the carbon matrix during the cross-linking process. [References: 70]
机译:为了制备多相陶瓷,进行了含过渡金属的有机硅-二乙炔低聚物的热解。聚[1,1'-双(二有机硅烷基乙炔基)二茂铁](2)在氩气下高达1350摄氏度热解,由于在碳基质中引入了环戊二烯基团并参与了该过程,因此FexSiyCz相的收率很高。陶瓷残留物中几​​乎所有的硅和铁。聚[{((二有机硅亚乙基)二乙炔}二钴六羰基羰基]](3)在1350摄氏度下热解,得到Co2Si和类石墨碳。在热解的早期阶段(100摄氏度),一部分一氧化碳3的演化表明,二乙炔单元的交联是由反应性钴物种诱导的。此外,在更高的温度(200-500摄氏度)下,钴簇催化了陶瓷的形成。已表明Co2Si是SiC与Co在高于1000摄氏度的温度下反应生成的,二者均在热解过程中形成。最后,在1100℃下,碳还原反应导致在交联过程中消除了掺入碳基质中的氧。 [参考:70]

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