首页> 外文期刊>Journal of Electronic Materials >Remarkable Electrical Conductivity Enhancement Through Mutual Variation of MWCNTs/Tin Oxide Concentration: Structural, Morphological and Electrical Properties
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Remarkable Electrical Conductivity Enhancement Through Mutual Variation of MWCNTs/Tin Oxide Concentration: Structural, Morphological and Electrical Properties

机译:通过MWCNT /氧化锡浓度的相互变化来增强导电性显着的导电性:结构,形态和电气性能

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摘要

Tin oxide/MWCNTs hybrid nanocomposites were synthesized via the malic acid-assisted modified sol-gel method. Effect of the concentration variation of both MWCNTs and tin oxide on the hybrid nanostructure, morphology, thermal and optical properties was studied using spectroscopic and analytical tools including: thermal gravimetric analyses (TGA), x-ray diffraction (XRD), scanning electron microscope (SEM), transition electron microscope (TEM), and ultraviolet-visible (UV-Vis) spectroscopy. Thermal gravimetric analyses of the hybrid nanocomposites showed a mode of stability up approximate to 375 degrees C, after this temperature the sample is subjected to decomposition of the MWCNTs. XRD patterns of the pristine tin oxide sample showed the presence of characteristic peaks related to two crystalline phases of tin oxide (rutile SnO2 and orthorhombic SnO), while the hybrid CSn10 (synthesized via 10% weight substitution of MWCNTs by tin oxide) and SnC10 (synthesized via 10% weight substitution of tin oxide by MWCNTs) nanocomposites showed a clear decrease in the crystallinity as a proof for dispersing of tin oxide nanoparticles within the hollow cavity of MWCNTs, which was further confirmed by SEM and TEM images. Furthermore, a complete absence of the characteristic peak of orthorhombic SnO was observed in the CSn10 sample. Optical and electrical properties of the hybrid nanocomposites-chitosan thin films were investigated before and after exposing to UV radiation for 1 h. The UV-Vis spectra showed a blue shift upon introducing MWCNTs into the oxide matrix while prolonged exposure to UV-radiation markedly affected the absorption and the band gaps of all nanocomposites. Investigation of the electric properties interestingly showed remarkable electrical conductivity enhancements upon introducing either MWCNTs or tin oxide in the matrix of each other. Introducing 10% MWCNTs into the tin oxide structure (SnC10) was accompanied by 76-fold increase in the electric conductivity; while incorporating 10% of tin oxide (CSn10) was accompanied by 110-fold increase in the electric conductivity of MWCNTs at 100 Hz frequency. Furthermore, the effect of prolonged UV-radiation on the electric properties of the synthesized hybrid nanocomposites was also reported.
机译:锡氧化物/多壁碳纳米管混合纳米复合材料被经由苹果酸辅助改性的溶胶 - 凝胶法合成。使用光谱和分析工具包括,研究两者的MWCNT的浓度变化和氧化锡的混合纳米结构,形态,热学和光学性能的影响:热重分析(TGA),X射线衍射(XRD),扫描电子显微镜( SEM),透射电子显微镜(TEM),和紫外 - 可见(UV-VIS)光谱法。的混合纳米复合材料的热重分析表明稳定性可达的一个模式,以近似375度C,这温度后的样品进行多壁碳纳米管的分解。原始氧化锡样品的XRD图谱显示与氧化锡的两种结晶相(金红石型SnO 2和斜方晶系的SnO)特征峰的存在,而混合动力CSn10和SnC10((经由由氧化锡10重量%的取代的MWCNT的合成)经由由多壁碳纳米管10%重量的取代的氧化锡)中合成的纳米复合材料显示出结晶性明显下降为多壁碳纳米管,其进一步通过SEM和TEM图像确认的中空腔内锡氧化物纳米粒子的分散证明。此外,CSn10样品中观察到了完全不存在正交SnO的特征峰的。之前和暴露于UV辐射1个小时后,混合纳米复合材料 - 壳聚糖薄膜的光学和电学性质的影响。紫外 - 可见光谱显示在多壁碳纳米管引入到氧化物基质而长时间暴露于UV辐射显着影响了吸收和所有的纳米复合材料的带隙蓝移。电特性的调查当在彼此的基质引入任一多壁碳纳米管或氧化锡有趣显示出显着的导电性增强。引入10个%多壁碳纳米管成氧化锡结构(SnC10)是伴随着76倍的增加在导电性;而掺入锡氧化物(CSn10)的10%是伴随着在100赫兹频率的MWCNT的电导率的110倍的增加。此外,还报道延长UV辐射对合成的混合纳米复合材料的电特性的作用。

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