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Synthesis and characterization of graphene oxide (GO) and reduced graphene oxide (rGO) using Modified Tour’s method for sensing device applications

机译:使用Modified Tour方法在传感设备应用中合成和表征氧化石墨烯(GO)和还原氧化石墨烯(rGO)

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Graphene oxide (GO) and reduced graphene oxide (rGO) have successfully synthesized using modified Tour’s method with end product having rapid purification rate, hydrophobic condition and conductive material. Prominent green reducing agent namely ascorbic acid has used in the GO sample preparation and act as reductant which help removal of oxygen containing functional group hence, resultant of rGO. In this investigation, the GO purification rate has accelerated by help of sodium hydroxide (NaOH) in function of washing agent with only 3 cycle’s wash. Raman spectroscopy results show that the synthesized GO and rGO samples yield in the range of 1349.33 cm$^{-1}$ (D band) to 1571.35 cm$^{-1}$ (G band) of Raman peak, respectively. A narrow and sharp Raman peak with high intensity of rGO sample has indicates it having a better quality as compared to GO sample. Contact angle measurement reveal the large angle obtained from rGO sample which are 72.8° on left hand side and 65.0° for right side, correspondingly have confirmed it is more hydrophobic than GO which attained contact angle of 52.5° on both sides. Surface morphology examined by Field Emission Scanning Electron Microscope (FE-SEM) show that both samples that diluted with deionized (DI) water have a loose sponge which similar to a thin wrinkle sheet in structure that suggest it has well exfoliated by using modified Tour’s method. On the other hand, produced samples that not diluted with DI water has tightly packed, corrugated and crumpled in form. Results from Energy Dispersive Spectroscopy (EDS) measurement has confirmed that oxygen-containing functional group have been removed from rGO sample by having higher calculated carbon / oxygen (C / O) in quotient with 3.09 as compared to GO sample with 1.43 which based on the atomic percentage of C/O. The significant reduction of resistance value from rGO sample with $33.41 imes 10^{4}Omega$ as compared to GO with $41.18 imes 10^{6} Omega$ have leading it to obtained better conductivity with $4.77 imes 10^{-7}$ S / cm in comparison to GO sample with $3.86 imes 10^{-9}$S / cm. Thus, this modified Tour’s method with the usage of green reductant agent has potential to be used in producing sensing device applications.
机译:氧化石墨烯(GO)和还原氧化石墨烯(rGO)已使用改良的Tour方法成功合成,其最终产品具有快速纯化速率,疏水条件和导电材料。突出的绿色还原剂,即抗坏血酸已用于GO样品制备中,并起还原剂的作用,有助于去除含氧官能团,因此是rGO的产物。在这项研究中,仅用3个周期的洗涤,借助氢氧化钠(NaOH)促进了洗涤剂的功能,从而提高了GO的净化率。拉曼光谱结果表明,合成的GO和rGO样品的拉曼峰的产率分别在1439.33 cm ^^-1(G波段)到1573.15 cm ^^-1(G波段)。 rGO样品强度高的窄而尖锐的拉曼峰表明,与GO样品相比,它具有更好的质量。接触角测量显示从rGO样品获得的大角度在左侧为72.8°,在右侧为65.0°,相应地证实它比GO的疏水性更高,在GO两侧均达到52.5°。场发射扫描电子显微镜(FE-SEM)检查的表面形态表明,两个用去离子(DI)水稀释的样品均具有疏松的海绵,其结构类似于薄的皱纹片,这表明使用改良的Tour方法可以很好地去除角质。 。另一方面,未用去离子水稀释的生产样品已紧密包装,起皱和弄皱。能量色散光谱(EDS)测量的结果已证实,由于计算碳/氧(C / O)的商为3.09,而具有1.43的GO样品(根据C / O的原子百分比。 rGO样品的电阻值以$ 33.41 \乘以10 ^ {4} \ Omega $显着降低,而GO的电阻值为$ 41.18 \乘以10 ^ {6} \ Omega $,导致电阻值以$ 4.77 \乘以10 ^获得更好的电导率。 {-7} $ S / cm与$ 3.86 \ times 10 ^ {-9} $ S / cm的GO样品相比。因此,这种采用绿色还原剂的改进的Tour方法具有在生产传感设备应用中的潜力。

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