Alkhouzaam Abedalkader, Abdelrazeq Haneen, Khraisheh Majeda, AlMomani Fares, Hameed Bassim H, Hassan Mohammad K, Al-Ghouti Mohammad A, Selvaraj Rengaraj
Mechanical Engineering Program, Texas A&M University at Qatar, Doha P.O. Box 23874, Qatar.
Department of Chemical Engineering, College of Engineering, Qatar University, Doha P.O. Box 2713, Qatar.
Nanomaterials (Basel). 2022 Apr 7;12(8):1240. doi: 10.3390/nano12081240.
A simple temperature-assisted solution interaction technique was used to functionalize and reduce graphene oxide (GO) using tetraethylenepentamine (TEPA) with less chemicals, low temperature, and without using other reducing agents. GO nanosheets, produced using a modified Hummers' method, were functionalized using two different GO:TEPA ratios (1:5 and 1:10). The reduction of GO was evaluated and confirmed by different spectroscopic and microscopic techniques. The FTIR and XPS spectra revealed that most of the oxygenated groups of GO were reduced. The emergence of amide groups in the XPS survey of the rGO-TEPA samples confirmed the successful reaction of TEPA with the carboxyl groups on the edges of GO. The replacement of the oxygenated groups increased the carbon/oxygen (C/O) ratio of GO by approximately 60%, suggesting a good reduction degree. It was found that the I/I ratio and the relative intensity of the D″ band clearly increased after the reduction reaction, suggesting that these bands are good estimators for the reduction degree of GO. The morphological structure of GO was also affected by the reaction with TEPA, which was confirmed by SEM and TEM images. The TEM images showed that the transparent GO sheets became denser and opaque after functionalization with TEPA, indicating an increase in the stacking level of the GO sheets. This was further confirmed by the XRD analysis, which showed a clear decrease in the d-spacing, caused by the removal of oxygenated groups during the reduction reaction.
采用一种简单的温度辅助溶液相互作用技术,使用四乙烯五胺(TEPA)对氧化石墨烯(GO)进行功能化和还原,该方法使用的化学试剂较少、温度较低且无需使用其他还原剂。采用改进的Hummers法制备的GO纳米片,使用两种不同的GO:TEPA比例(1:5和1:10)进行功能化。通过不同的光谱和显微镜技术对GO的还原进行了评估和确认。FTIR和XPS光谱表明,GO的大多数含氧基团被还原。rGO-TEPA样品的XPS调查中酰胺基团的出现证实了TEPA与GO边缘羧基的成功反应。含氧基团的取代使GO的碳/氧(C/O)比增加了约60%,表明还原程度良好。发现还原反应后I/I比和D″带的相对强度明显增加,表明这些带是GO还原程度的良好估计指标。GO的形态结构也受到与TEPA反应的影响,这通过SEM和TEM图像得到证实。TEM图像显示,用TEPA功能化后,透明的GO片变得更致密且不透明,表明GO片的堆叠水平增加。XRD分析进一步证实了这一点,该分析表明d间距明显减小,这是由于还原反应过程中含氧基团的去除所致。