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A facile method to prepare ZrC nanofibers by electrospinning and pyrolysis of polymeric precursors

机译:通过静电纺丝和聚合物前体热解制备ZRC纳米纤维的容易方法

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摘要

Zirconium carbide (ZrC) is one of the most attractive ultra-high temperature ceramics due to its excellent properties. ZrC nanofibers were fabricated via electrospinning and pyrolysis of a novel polymeric precursor, Polyzirconosaal (PZSA), with the addition of polyvinylpyrrolidone (PVP) as the spinning aid. The polymer PZSA was prepared from the chemical reaction between Polyzirconoxane (PZO) and Salicyl alcohol. The as-spun PZSA/PVP fibers were converted to ZrC nanofibers with a diameter similar to 200 nm after carbothermal reduction at 1300 degrees C in argon. The obtained ZrC nanofibers maintained its excellent fibrous morphology. The microstructures exhibited that nanoscale ZrC particles dispersed in the fibers containing free carbon. The average crystallite size of ZrC particles using Scherrer method was 42 nm. The obtained ZrC nanofibers were characterized by XRD, SEM and TEM. The current material would be particularly useful for applications such as catalyst support, filters, gas storage, supercapacitors, and phase change material support in thermal management systems.
机译:碳化锆(ZRC)是由于其优异的性能引起的最具吸引力的超高温陶瓷之一。通过新型聚合物前体,聚齐尼前体(PZSA)的静电纺丝和热解制,加入聚乙烯吡咯烷酮(PVP)作为旋转助剂,通过电刺激和热解来制造ZRC纳米纤维。聚合物PZSA由聚齐氮氧氧氧氧氧氧(PZO)和水杨醇之间的化学反应制备。在氩气中的1300℃下在1300℃下,将AS-Spun PZSA / PVP纤维转化为直径与200nm的直径相似。所得ZRC纳米纤维保持其优异的纤维形态。微观结构表明,纳米级Zrc颗粒分散在含有游离碳的纤维中。使用Scherrer方法的ZRC颗粒的平均微晶尺寸为42nm。通过XRD,SEM和TEM表征获得的ZRC纳米纤维。目前材料对于催化剂载体,过滤器,储气剂,超级电容器和热管理系统中的相变材料支持特别有用。

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