<p>Graphene has been widely studied due to its unique structure and exceptional performance. Various methods are available for preparing graphene, and the electrochemical exfoliation method is chosen for its environmentally friendly, ease of operation, and strong controllability. However, the process of electrochemical exfoliation preparation is influenced by various factors, which still shows challenges of slow exfoliation speed and low yield. In this study, high-purity flexible graphite paper and a saturated calomel electrode (SCE) were used as a three-electrode system, using yield, interlayer spacing, and defect degree as evaluation criteria to explore the influence of electrolytic voltage and electrolyte concentration on graphite electrochemical exfoliation. Using dispersion state, settling time, and defect degree as evaluation criteria to examined the impact of dispersant type on the quality of graphene. The research demonstrated that electrochemical exfoliating at 10&#xa0;V cell voltage with a bipolar distance of 2&#xa0;cm in a 0.20&#xa0;M Na<sub>2</sub>SO<sub>4</sub> solution at pH 7 and room temperature, followed by a 10&#xa0;min ultrasound dispersion in a C<sub>2</sub>H<sub>5</sub>OH medium at a liquid–solid ratio of 1444:1. The efficiency of graphene production is 59.8%, with low defect levels (<i>I</i><sub><i>D</i></sub>/<i>I</i><sub><i>G</i></sub> = 0.355), large interlayer spacing (<i>d</i> = 0.350&#xa0;nm), and a few layers (approximately 4 layers). In addition, the graphene dispersed in a<i> N</i>,<i>N</i>-Dimethylformamide (DMF) medium with a liquid–solid ratio of 1512:1 exhibits the highest level of stability.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Preparation of graphene by electrochemical exfoliation in Na2SO4 solution

  • Min Chen,
  • Aimin Liu,
  • Lingyu Kong,
  • Fengguo Liu,
  • Song Li,
  • Yubao Liu,
  • Zhongning Shi

摘要

Graphene has been widely studied due to its unique structure and exceptional performance. Various methods are available for preparing graphene, and the electrochemical exfoliation method is chosen for its environmentally friendly, ease of operation, and strong controllability. However, the process of electrochemical exfoliation preparation is influenced by various factors, which still shows challenges of slow exfoliation speed and low yield. In this study, high-purity flexible graphite paper and a saturated calomel electrode (SCE) were used as a three-electrode system, using yield, interlayer spacing, and defect degree as evaluation criteria to explore the influence of electrolytic voltage and electrolyte concentration on graphite electrochemical exfoliation. Using dispersion state, settling time, and defect degree as evaluation criteria to examined the impact of dispersant type on the quality of graphene. The research demonstrated that electrochemical exfoliating at 10 V cell voltage with a bipolar distance of 2 cm in a 0.20 M Na2SO4 solution at pH 7 and room temperature, followed by a 10 min ultrasound dispersion in a C2H5OH medium at a liquid–solid ratio of 1444:1. The efficiency of graphene production is 59.8%, with low defect levels (ID/IG = 0.355), large interlayer spacing (d = 0.350 nm), and a few layers (approximately 4 layers). In addition, the graphene dispersed in a N,N-Dimethylformamide (DMF) medium with a liquid–solid ratio of 1512:1 exhibits the highest level of stability.