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Processing and characterization of cobalt silicide nanoparticle-containing silicon carbide fibers through a colloidal method and their underlying mechanism

机译:胶体法处理含硅化钴纳米颗粒的碳化硅纤维及其表征

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摘要

Cobalt-containing silicon carbide (Co-SiC) fibers were synthesized through a colloidal method. Dicobalt octacarbonyl [Co2(CO)8] was employed to react with low-molecular weight liquid polycarbosilane (LPCS) to prepare a stable Co-containing colloid (Co-colloid), which was subsequently added to high-molecular weight solid polycarbosilane to obtain the precursor. FTIR, GPC, XRD, and TEM were employed to further understand and develop the mechanism for the formation of the Co-colloid. Results show that active Co intermediates derived from the incomplete decomposition of Co2(CO)8 promoted LPCS cross-linkage. The effects of the Co-colloid on the oxidation-curing nature of the green fiber were also investigated. Under heat treatment at higher temperature, carbonyls in the fibers completely decomposed and further crystallized in the morphology of cobalt silicide (CoSi) domains. The effects of Co on the electrical resistivity, magnetic properties, dielectric properties, microwave absorption properties and tensile strength of SiC fibers were also studied.
机译:通过胶体法合成了含钴的碳化硅(Co-SiC)纤维。使用八钴二钴[Co2(CO)8]与低分子量液态聚碳硅烷(LPCS)反应,制备稳定的含钴胶体(Co-胶体),随后将其添加到高分子量固态聚碳硅烷中,从而获得前体。 FTIR,GPC,XRD和TEM用于进一步了解和发展共胶体形成的机理。结果表明,源自Co2(CO)8不完全分解的活性Co中间体促进了LPCS交联。还研究了共胶体对生纤维的氧化固化性质的影响。在较高温度下进行热处理时,纤维中的羰基在硅化钴(CoSi)域的形态上完全分解并进一步结晶。还研究了Co对SiC纤维的电阻率,磁性能,介电性能,微波吸收性能和拉伸强度的影响。

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