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Preparation of CTCNFs/Co9S8 hybrid nanofibers with enhanced microwave absorption performance

机译:具有增强微波吸收性能的CTCNFS / CO9S8杂交纳米纤维的制备

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摘要

A three-step synthesis strategy has been applied to the preparation of Co9S8-loaded tubular carbon nanofibers (CTCNFs/Co9S8 hybrid nanofibers) with excellent microwave absorbing ability. Firstly, tubular polymer nanofibers (TPNFs) are synthesized using the confined self-condensation method that we developed. Afterwards, TPNFs are converted into surface carboxylated tubular carbon nanofibers (CTCNFs) by carbonization and subsequent acidification processes. Finally, a hydrothermal method is used for the controllable growth of Co9S8 nanoparticles on CTCNFs, and a series of CTCNFs/Co9S8 hybrid nanofibers with different Co9S8 loading are obtained. The prepared CTCNFs/Co9S8 hybrid nanofibers possess abundant effective interface and defect dipoles, which will lead to stronger polarization. Using the strategy of enhancing dielectric loss, the microwave dissipation ability of CTCNFs/Co9S8 hybrid nanofibers has been significantly improved, showing an excellent low-frequency absorbing performance with a minimum reflection loss of -46.81 dB@5.3 GHz. In addition, the composition, structure and properties of nanofibers have been systematically characterized. The Co9S8 loading on CTCNFs and the filler content of CTCNFs/Co9S8 hybrid nanofibers in matrix are studied and optimized. The microwave attenuation mechanism is also explained.
机译:已经将三步合成策略应用于具有优异的微波吸收能力的CO9S8负载管状碳碳纳米纤维(CTCNFS / CO9S8杂交纳米纤维)。首先,使用我们开发的狭窄的自冷凝方法合成管状聚合物纳米纤维(TPNF)。然后,通过碳化和随后的酸化方法将TPNF转化为表面羧化管状碳纳料(CTCNF)。最后,使用水热法用于CTCNF上的CO9S8纳米颗粒的可控生长,得到一系列具有不同CO9S8负载的CTCNF / CO9S8杂合纳米纤维。制备的CTCNFS / CO9S8杂交纳米纤维具有丰富的有效界面和缺陷偶极子,这将导致较强的极化。利用增强介电损耗的策略,CTCNFS / CO9S8杂交纳米纤维的微波耗散能力得到了显着改善,显示出优异的低频吸收性能,最小反射损耗为-46.81dB @ 5.3 GHz。此外,已系统地表征了纳米纤维的组成,结构和性质。研究和优化CTCNFS上的CO9S8负载CTCNF和CTCNFS / CO9S8杂交纳米纤维的填料含量。还解释了微波衰减机构。

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