Gürünlü Betül, Taşdelen-Yücedağ Çiğdem, Bayramoğlu Mahmut
Bioengineering Department, Üsküdar University, Altunizade Mah. Üniversite Sok., Üsküdar, Istanbul 34662, Turkey.
Chemical Engineering Department, Gebze Technical University, Gebze 41400, Turkey.
Molecules. 2022 Aug 7;27(15):5027. doi: 10.3390/molecules27155027.
This study presents an easy and quick method for the synthesis of graphene from graphite in a set of solvents, including n-Hexadecane (n-Hexa), dimethylsulfoxide (DMSO), sodium hydroxide (NaOH), 1-octanol (OCTA), perchloric acid (PA), N,N-Dimethylformamide (DMF), ethylene glycol (EG), and ethylene diamine (ED), via microwave (MW) energy. The properties of final products were determined by X-ray diffraction spectroscopy (XRD), Fourier transform infrared spectroscopy (FTIR), ultraviolet-visible (UV-Vis) spectroscopy, and the four-point probe technique. The XRD spectra of most of the MW-assisted graphene products showed peaks at 2θ = 26.5° and 54°. Layer numbers extend from 2 and 25, and the leading comes about were gotten by having two-layered products, named as graphene synthesized in dimethylsulfoxide (G-DMSO), graphene synthesized in ethylene glycol (G-EG), and graphene synthesized in 1-octanol (G-OCTA). G-DMF has the highest electrical conductivity with 22 S/m. The electrical conductivity is higher when the dipole moment of the used solvent is between 2 and 4 Debye (D). The FTIR spectra of most of the MW-assisted graphene products are in line with commercial graphene (CG). The UV-Vis spectra of all MW-assisted graphene products showed a peak at 223 nm referring to characteristic sp2 C=C bonds and 273 nm relating to the n → π * transition of C-O bonds.
本研究提出了一种简便快速的方法,可通过微波(MW)能量在包括正十六烷(n-Hexa)、二甲基亚砜(DMSO)、氢氧化钠(NaOH)、1-辛醇(OCTA)、高氯酸(PA)、N,N-二甲基甲酰胺(DMF)、乙二醇(EG)和乙二胺(ED)在内的一系列溶剂中由石墨合成石墨烯。通过X射线衍射光谱(XRD)、傅里叶变换红外光谱(FTIR)、紫外可见(UV-Vis)光谱和四点探针技术测定最终产物的性能。大多数微波辅助石墨烯产物的XRD光谱在2θ = 26.5°和54°处出现峰。层数从2到25不等,主要产物是通过获得两层产物得到的,命名为在二甲基亚砜中合成的石墨烯(G-DMSO)、在乙二醇中合成的石墨烯(G-EG)和在1-辛醇中合成的石墨烯(G-OCTA)。G-DMF的电导率最高,为22 S/m。当所用溶剂的偶极矩在2至4德拜(D)之间时,电导率更高。大多数微波辅助石墨烯产物的FTIR光谱与商业石墨烯(CG)一致。所有微波辅助石墨烯产物的UV-Vis光谱在223 nm处出现一个峰,这与特征性的sp2 C=C键有关,在273 nm处出现的峰与C-O键的n→π*跃迁有关。