Electrochemical exfoliation and characterizations of low-defect, large-scale thermally reduced graphene oxide via pencil core

被引:4
|
作者
Singh, Pankaj Kumar [1 ]
Sharma, Kamal [1 ]
Singh, Pradeep Kumar [1 ]
机构
[1] GLA Univ Mathura, Micronano Dev Res Ctr, Dept Mech Engn, Mathura, Uttar Pradesh, India
来源
关键词
Electrochemical exfoliation; reduced graphene oxide; graphene synthesis; thermal reduction; Raman analysis; inorganic electrolyte; CHEMICAL-REDUCTION; NANOSHEETS; PERFORMANCE; DERIVATIVES;
D O I
10.1142/S0217979223501606
中图分类号
O59 [应用物理学];
学科分类号
摘要
The most difficult aspect in electrochemical synthesis of graphene oxide (GO) is preventing graphite from disintegrating on the surface of the anode, which affects microstructural characteristics and yield. In this study, the effect of applied potential, electrolytic temperature, and types of electrolytic solution on yield, anode surface disintegration and microstructural properties of electrochemically synthesized GO has been investigated. The GO has been synthesized in an aqueous solution of 1 M piranha solution and sulfuric acid (H(2)SO4) via electrochemical method by applying 24 V DC power source. After that, the GO was thermally reduced at around 650 degrees C in a muffle furnace, and cooled down inside the muffle furnace. The yield, pH of the electrolytic solution, and anode surface disintegration all looked to be affected by the applied voltage and electrolyte temperature. Between the temperatures of 50 degrees C and 70 degrees C, the maximum yield was observed. During UV-Vis and XRD investigation, the absorbance, crystal structure, and interplanar distance appear to be unaffected by the reduction temperature, high voltage, electrolyte temperature and hydrogen peroxide addition. As demonstrated by Raman spectra, TEM, FE-SEM, AFM, and TGA analysis, high voltage, electrolyte temperature, and hydrogen peroxide addition have an important effect on the degree of defect, microstructure, and oxygen percentage, surface roughness and thermal stability of thermally reduced graphene oxide (TRGO).
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页数:14
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