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Enhancing the electrical conductivity of carbon-nanotube-based transparent conductive films using functionalized few-walled carbon nanotubes decorated with palladium nanoparticles as fillers

机译:使用装饰有钯纳米粒子的功能化短壁碳纳米管增强碳纳米管基透明导电膜的电导率

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This work demonstrates the processing and characterization of the transparent and highly electrically conductive film using few-walled carbon nanotubes (FWCNTs) decorated with Pd nanoparticles as fillers. The approach included functionalizing the FWCNTs, immersing them in an aqueous solution of palladate salts, and subsequently subjecting them to a reduction reaction in H_2. Field-emission scanning electron microscopy and transmission electron microscopy images showed that the functionalized FWCNTs (f-FWCNTs) were decorated with uniform and homogeneous Pd nanoparticles with an average diameter of 5 nm. A shift of the G-band to a higher frequency in the Raman spectra of the Pd-decorated f-FWCNTs (Pd@f-FWCNTs) illustrates that the p-type doping effect was enhanced. X-ray photoelectron spectroscopy and energy-dispersive X-ray spectroscopy showed that PdCl_2 was the primary decoration compound on the f-FWCNTs prior to the reduction reaction and that Pd nanoparticles were the only decorated nanoparticles after H_2 reduction. The contact resistance between the metallic materials and the semiconducting CNTs in FWCNTs, controlled by the Schottky barrier, was significantly decreased compared to the pristine FWCNTs. The decrease in contact resistance is attributed to the 0.26 eV increase of the work function of the Pd@f-FWCNTs. Extremely low sheet resistance of 274 ohm/sq of the poly(ethylene terephthalate) substrates coated with Pd@f-FWCNTs was attained, which was 1/25 the resistance exhibited by those coated with FWCNTs, whereas the same optical transmittance of 81.65% at a wavelength of 550 nm was maintained.
机译:这项工作演示了使用装饰有Pd纳米粒子作为填充物的少壁碳纳米管(FWCNT)来对透明且高度导电的薄膜进行处理和表征。该方法包括功能化FWCNT,将其浸入钯盐的水溶液中,然后使其在H_2中进行还原反应。场发射扫描电子显微镜和透射电子显微镜图像显示,功能化的FWCNT(f-FWCNT)装饰有均匀且均质的Pd纳米粒子,平均直径为5 nm。在装饰了Pd的f-FWCNTs(Pd @ f-FWCNTs)的拉曼光谱中,G波段向更高的频率偏移表明,p型掺杂效应得到了增强。 X射线光电子能谱和能量色散X射线能谱表明,PdCl_2是还原反应前f-FWCNTs上的主要装饰化合物,Pd纳米粒子是H_2还原后唯一被修饰的纳米粒子。与原始FWCNT相比,受肖特基势垒控制的FWCNT中金属材料与半导体CNT之间的接触电阻显着降低。接触电阻的降低归因于Pd @ f-FWCNTs功函的0.26 eV的增加。涂有Pd @ f-FWCNT的聚对苯二甲酸乙二醇酯基板的薄层电阻极低,为274 ohm / sq,是涂有FWCNT的基板的1/25,而相同的光透射率是81.65%。维持550nm的波长。

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