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首页> 外文期刊>Journal of Materials Science >SiC nanofibers by pyrolysis of electrospun preceramic polymers
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SiC nanofibers by pyrolysis of electrospun preceramic polymers

机译:电纺陶瓷前聚合物的热解碳化硅纳米纤维

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Silicon carbide (SiC) nanofibers of diameters as low as 20 nm are reported. The fibers were produced through the electrostatic spinning of the preceramic poly(carbomethylsilane) with pyrolysis to ceramic. A new technique was used where the preceramic was blended with polystyrene and, subsequent to electrospinning, was exposed to UV to crosslink the PS and prevent fiber flowing during pyrolysis. Electrospun SiC fibers were characterized by Fourier transform infrared spectroscopy, thermo gravimetric analysis-differential thermal analysis, scanning electron microscopy, transmission electron microscopy, X-ray diffraction, and electron diffraction. Fibers were shown to be polycrystalline and nanograined with β-SiC 4H polytype being dominant, where commercial methods produce α-SiC 3C. Pyrolysis of the bulk polymer blend to SiC produced α-SiC 15R as the dominant polytype with larger grains showing that electrospinning nanofibers affects resultant crystallinity. Fibers produced were shown to have a core–shell structure of an oxide scale that was variable by pyrolysis conditions.
机译:据报道,直径小于20 nm的碳化硅(SiC)纳米纤维。纤维是通过将预陶瓷聚(羧甲基硅烷)静电纺丝并热解成陶瓷而生产的。使用一种新技术,其中将预陶瓷与聚苯乙烯共混,并在静电纺丝后将其暴露于紫外线下以使PS交联并防止纤维在热解过程中流动。通过傅立叶变换红外光谱,热重分析-差热分析,扫描电子显微镜,透射电子显微镜,X射线衍射和电子衍射对电纺SiC纤维进行了表征。纤维被证明是多晶的,并且纳米晶以β-SiC4H多型为主导,在这种方法中,商业方法生产的是α-SiC3C。本体聚合物共混物热解成SiC产生了α-SiC15R,它是具有较大晶粒的主要多型体,表明电纺纳米纤维会影响最终的结晶度。结果表明,所生产的纤维具有氧化皮的核壳结构,该结构受热解条件的影响而变化。

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