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Emulsion processing of polymer-derived porous Si/C/(O) ceramic bodies

机译:聚合物衍生的多孔Si / C /(O)陶瓷体的乳液加工

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摘要

A novel route of miniemulsion processing was applied to preceramic polymers in order to fabricate porous Si/C/(O) bodies. Commercially available polysiloxane and polycarbosilane precursors and water were emulsified via intensive stirring or ultrasonication in the presence of surfactants, and subsequently shaped and cured in an autoclave. The resulting green bodies were dried and pyrolytically converted at 700 and 1050 deg C under nitrogen into ceramic counterparts retaining their shape. A fine interconnected pore network derived from the aqueous phase allows escape of gaseous decomposition products during pyrolysis and avoids cracking. In the presence of transition metals such as Fe, Co, Ni or Pd nanofibers consisting of beta-SiC/a-SiO_2 are formed. Effects of polymer viscosity and processing parameters on the microstructures, porosities and pore sizes of the resulting products were investigated by means of DLS, mercury porosimetry, SEM, TEM, XRD and FTIR.
机译:为了制备多孔Si / C /(O)体,将微乳液加工的新途径应用于陶瓷前体聚合物。在表面活性剂的存在下,通过剧烈搅拌或超声处理将可商购的聚硅氧烷和聚碳硅烷前体和水乳化,然后在高压釜中成型和固化。将所得的生坯干燥,并在氮气下在700和1050℃热解转化为保持其形状的陶瓷对应物。源自水相的精细互连的孔网络允许热解过程中气体分解产物逸出并避免裂化。在过渡金属(例如Fe,Co,Ni或Pd)的存在下,形成了由β-SiC/ a-SiO_2组成的纳米纤维。借助DLS,水银孔率法,SEM,TEM,XRD和FTIR研究了聚合物粘度和加工参数对所得产物的微观结构,孔隙率和孔径的影响。

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