• 专利标题:   Electrically conductive multi-layered nanocomposition assembly used for making electrode for super capacitor, comprises many nanocomposite layers having many materials e.g. conducting polymer, carbon-based material, and metal oxide.
  • 专利号:   MY192002-A
  • 发明人:   SULAIMAN Y, KULANDAIVALU S, HUSSEIN M Z, JAAFAR A M
  • 专利权人:   UNIV PUTRA MALAYSIA
  • 国际专利分类:   C25B011/00, H01G011/22, H01G011/30, H01G011/32, H01G011/34, H01G011/36, H01G011/46, H01G011/52, H01G011/54, H01G011/58, H01G011/66, H01M004/00, H01M004/131
  • 专利详细信息:   MY192002-A 22 Jul 2022 C25B-011/00 202325 Pages: 27 English
  • 申请详细信息:   MY192002-A MY702018 24 May 2018
  • 优先权号:   MY702018

▎ 摘  要

NOVELTY - Electrically conductive multi-layered nanocomposition assembly, comprises many nanocomposite layers, where each nanocomposite layer having many materials, and any one of the materials is a conducting polymer comprising polyaniline, polypyrrole, and/or poly(3,4-ethylenedioxythiophene), a carbon-based material comprising graphene-based material, cellulose, activated carbon, carbon nanotubes, carbide-derived carbons, a metal oxide/hydroxide, and/or a layered double oxide/hydroxide comprising elements from transition metals group. USE - The nanocomposition assembly is useful for manufacturing of an electrode for a supercapacitor, where supercapacitors are used in hybrid electric vehicles, security alarm systems, solar power and uninterruptible power supply, and other potential applications e.g. in biosensors and batteries. ADVANTAGE - The electrically conductive multi-layered nanocomposition assembly has excellent specific capacitance, high specific energy, high specific power, and good life cycle. DETAILED DESCRIPTION - INDEPENDENT CLAIMS are also included for: fabricating (M1) an electrically conductive multi-layered nanocomposition assembly for an electrode, comprising preparing a nanocomposite solution from the materials, depositing a nanocomposite layer onto a substrate from the nanocomposite solution, where the substrate is a membrane filter and a conducting current collector, and (ii) depositing a subsequent nanocomposite layer using the nanocomposite solution or another nanocomposite solution of different materials as prepared in step (i) on top of the deposited nanocomposite layer to form many nanocomposite layers; and a supercapacitor having an electrode configured as anode and an electrode configured as a cathode disposed in spatial opposition in relation to one another and a permeable separator obtained from any one of a gel polymer electrolyte or a piece of filter paper immersed in an electrolyte, interposed between the anode and the cathode, where at least one electrode is an electrically conductive multi-layered nanocomposition assembly comprising nanocomposite layers. DESCRIPTION OF DRAWING(S) - The figure shows the electrically conductive multi-layered nanocomposite for an electrode.