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Synthesis of Novel Cobalt-Containing Polysilazane Nanofibers with Fluorescence by Electrospinning

机译:静电纺丝法合成新型含钴聚硅氮烷纳米纤维

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摘要

Emission in the nanostructured materials is important in microanoelectronic devices. We report here a strategy for the processing of micron and submicron fibers from a cobalt-containing hyperbranched polysilazane by electrospinning. The electrospun nanofibers have uniform average diameters of ~600 nm and lengths of ~10 μm. The photophysical properties of polycobaltsilazane (PCSN) are studied using UV-VIS and photoluminescence spectroscopies. PCSN fibers display a series of emission peaks between 490 and 615 nm. The Co(II) doping into polysilazane leads to the emission from 465 to 415 nm. The emission wavelength shift of Co(III)-containing polysilazane is specific under 340 and 470 nm excitation wavelengths, respectively, while it is not observed with metal-free polysilazane. Thermogravimetric analysis-Differentical thermal analysis (TGA-DTA) profiles also show good thermostability of the PCSN fibers at 800 °C under Ar atmosphere. The use of PCSN offers both enhanced ceramic yields against ~5 wt % starting material and the fluorescence intensity of polymeric fibers.
机译:纳米结构材料中的发射在微/纳米电子器件中很重要。我们在这里报告了一种通过静电纺丝从含钴超支化聚硅氮烷加工微米和亚微米纤维的策略。电纺纳米纤维具有约600 nm的均匀平均直径和约10μm的长度。聚钴硅氮烷(PCSN)的光物理性质是使用UV-VIS和光致发光光谱学研究的。 PCSN光纤在490至615 nm之间显示一系列发射峰。掺杂到聚硅氮烷中的Co(II)导致465至415 nm的发射。含Co(III)的聚硅氮烷的发射波长偏移分别在340和470 nm激发波长下是特定的,而在无金属的聚硅氮烷中则没有观察到。热重分析-差热分析(​​TGA-DTA)曲线也显示PCSN纤维在Ar气氛下于800°C时具有良好的热稳定性。 PCSN的使用既可提高约5 wt%起始材料的陶瓷产量,又可提供聚合物纤维的荧光强度。

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