首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Boron-modified polysilazane as a novel single-source precursor for SiBCN ceramic fibers: synthesis melt-sinning, curing and ceramic conversion
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Boron-modified polysilazane as a novel single-source precursor for SiBCN ceramic fibers: synthesis melt-sinning, curing and ceramic conversion

机译:硼改性聚硅氮烷作为SiBCN陶瓷纤维的新型单源前驱体:合成熔融-正火,固化和陶瓷转化

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摘要

A novel boron-modified polysilazane functionalised with Si- and N-bonded methyl groups has been synthesised and characterised by means of FT-IR and NMR spectroscopies as well as elemental analysis. Both Si- and N-bonded methyl groups inhibited extensive cross-linking to yield a tractable polymer which was successfully processed into polymer green fibers by a melt-spinning process. After the shaping processing, the N-bonded methyl groups offered the capability of facile polymer cross-linking in an ammonia atmosphere at 200 degreesC to increase the ceramic yield of the polymer and avoid inter-fiber fusion. The as-obtained cured fibers were subsequently pyrolysed at 1400 degreesC ill a nitrogen atmosphere to provide amorphous and stable Si3.0B1.0C5.0N2.4 ceramic fibers with ca. 1.3 GPa in tensile strength, ca. 170 GPa in Young's modulus and ca. 23 mum in diameter.
机译:合成了一种新型的经硅键合和N键合的甲基官能化的硼改性聚硅氮烷,并通过FT-IR和NMR光谱以及元素分析对其进行了表征。 Si和N键合的甲基均抑制了广泛的交联,从而产生了易处理的聚合物,该聚合物通过熔融纺丝工艺成功加工成聚合物生纤维。成型加工后,N键合的甲基具有在200℃的氨气氛中容易进行聚合物交联的能力,以提高聚合物的陶瓷收率并避免纤维间熔融。随后将所获得的固化纤维在氮气气氛下在1400℃下热解,以提供无定形且稳定的Si3.0B1.0C5.0N2.4陶瓷纤维。拉伸强度约为1.3 GPa。杨氏模量为170 GPa,约直径23毫米。

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