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Dispersion of Multi Walled Carbon Nanotubes within 3 mol. Yttria Stabilized Zirconia Based Ceramics: A Comparative Study of Methods

机译:多壁碳纳米管在3摩尔内分散。 %ytTria稳定的氧化锆基陶瓷:方法的比较研究

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Achieving an appropriate dispersion of Carbon Nanotubes (CNTs) within a ceramic matrix should be referred to as the main challenge for the synthesis of CNTs reinforced ceramics with enhanced toughening properties, hi the present paper, dispersion of 1 wt% MWCNTs within 3YTZP based ceramics has been investigated through the comparison of three conventional approaches based on using surfactants, functionalization, and planetary milling. Addition of 2 wt% Sodium Dodecyl Sulfate (SDS) as the surfactant material followed by 2 hours ultrasonication was found successful to disperse carbon nanotubes in a water media, while chemical functionalization of the CNTs surface using a mixture of H2SO4/HNO3 (3:1) could result in identical well dispersed powder mixtures, lorniation of functional groups on the surface of CNTs was confirmed by FTIR spectroscopy and efficiency of the above methods to result in well dispersed powders was detected using UV-Vis sped roscopy. The surfactant method was, accordingly, found to result in the highest dispersion of nanotbes within the ceramic microstructure. In the planetary milling method, well dispersed CNTs within 3YTZP particles could be attained through the optimization of processing conditions such as 24 h milling time, 250 RPM, and 2 BPR. The accuracy of the above results could be verified by SEM as well as Raman spectroscopy. On the other hand, although the dispersed powders provided through functionalization and planetary milling methods revealed CNTs bundles in few scopes of the SEM results and minor damages were also observed in the Raman spectroscopy report, they were both at acceptable levels.
机译:在陶瓷基质内实现碳纳米管(CNT)在陶瓷基质中的适当分散应被称为用于合成CNTS增强陶瓷的主要挑战,具有增强的增韧性能,HI本文,在3型陶瓷中的1wt%MWCNT的分散体具有通过基于使用表面活性剂,官能化和行星铣削的三种常规方法进行了研究。添加2wt%十二烷基硫酸钠(SDS)作为表面活性剂材料,然后发现2小时超声,以在水介质中分散碳纳米管,同时使用H2SO4 / HNO3的混合物来分散碳纳米管,而CNTS表面的化学官能化(3:1 )可以产生相同的良好分散的粉末混合物,通过FTIR光谱法证实CNT表面上的官能团的髓系,并使用UV-Vis Sped Roscopy检测上述方法的效率。因此,表面活性剂方法发现导致陶瓷微观结构内的纳米簇的最高分散体。在行星碾磨方法中,通过优化如24h碾磨时间,250rpm和2bpr,可以通过优化的加工条件实现3羟ZP颗粒内的良好分散的CNT。可以通过SEM和拉曼光谱验证上述结果的准确性。另一方面,尽管通过官能化和行星碾磨方法提供的分散粉末显示出少数范围内的CNT捆,但在拉曼光谱报告中也观察到轻微损害,它们都处于可接受的水平。

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