• 专利标题:   Method for preparing iron molybdate-graphene composite structured super-capacitor electrode material, involves taking natural graphite as raw material, followed by transferring dispersion to reaction kettle, heating, washing and drying.
  • 专利号:   CN107610943-A
  • 发明人:   LUO B, CHENG B
  • 专利权人:   UNIV NANCHANG
  • 国际专利分类:   H01G011/30, H01G011/32, H01G011/86
  • 专利详细信息:   CN107610943-A 19 Jan 2018 H01G-011/86 201812 Pages: 11 Chinese
  • 申请详细信息:   CN107610943-A CN10676759 09 Aug 2017
  • 优先权号:   CN10676759

▎ 摘  要

NOVELTY - An iron molybdate-graphene composite structured super-capacitor electrode material preparing method involves taking natural graphite as raw material using improved Hummers method to obtain graphite oxide. The graphite oxide is dissolved in water to form graphite oxide dispersion. The graphite oxide dispersion is added with sodium molybdate and stirred to obtain dispersion. The dispersion is transferred to a reaction kettle, heated and cooled to obtain resultant product. The product is washed with distilled water and absolute ethanol and dried to obtain the finished product. USE - Method for preparing iron molybdate-graphene composite structured super-capacitor electrode material. ADVANTAGE - The method enables preparing electrode material with excellent performance. DETAILED DESCRIPTION - An iron molybdate-graphene composite structured super-capacitor electrode material preparing method involves taking natural graphite as raw material using improved Hummers method to obtain graphite oxide. The graphite oxide is dissolved in distilled water to form a uniform dispersion of graphite oxide. The graphite oxide dispersion is subsequently added with sodium molybdate and anhydrous ferric chloride and stirred to dissolve sufficiently to obtain dispersion. The dispersion is transferred to a reaction kettle, heated for 12 hours and cooled naturally to obtain resultant product. The resultant product is washed with distilled water and absolute ethanol for several times and dried to obtain the finished product.