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Micelle-Mediated Synthesis of Single-Crystalline β(3C)-SiC Fibers via Emulsion Electrospinning

机译:胶束静电纺丝法胶束介导合成单晶β(3C)-SiC纤维

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摘要

Submicroscale SiC fiber mats were prepared by the electrospinning of an oil-in-water(O/W) precursor emulsion, a subsequent thermal curing treatment, and calcination at 1600 °C. Low-molecular-weight PCS micelles entrapped within an aqueous PVP matrix played an important role in forming the continuous and dense core structure, resulting in pure SiC fibers. The manipulation of SiC fiber diameters could be obtained via control of the micellar PCS concentration (10-30 wt %), enabling the production of dense and highly crystallized SiC fiber architectures with diameters ranging from 200 to 350 nm.
机译:通过对水包油(O / W)前体乳液进行电纺丝,随后的热固化处理以及在1600°C下煅烧来制备亚微米级SiC纤维毡。截留在水性PVP基质中的低分子量PCS胶束在形成连续且致密的芯结构中起着重要作用,从而形成了纯SiC纤维。 SiC纤维直径的控制可通过控制胶束PCS浓度(10-30 wt%)来实现,从而能够生产直径范围为200至350 nm的致密且高度结晶的SiC纤维结构。

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