The attention toward supercapacitors, especially hybrid ones, has surged due to their distinctive electrochemical properties. The high performance in specific capacitanceSpecific capacitance, stability, energy, and power density makes hybrid nanostructured materialsNanostructured materials, known for their cost-effectiveness and unique attributes, a promising renewable option for eco-friendly energy storage devices. This chapter explains the ideas, types, properties, and ways to make electrode materials for hybrid supercapacitorsHybrid supercapacitors. This chapter emphasizes various materials like grapheneGraphene-metal oxide hybridsGraphene-metal oxide hybrids, Li- and Na-ion hybrids, polymer-mixed hybrids, organic-inorganic hybrids, advanced nano-hybrid metal-organic frameworksMetal-Organic Frameworks (MOFs), and flexible, wearable-based nano-hybrid materials, aiming to make hybrid supercapacitorsHybrid supercapacitors better.

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Hybrid Nanocomposite Materials for Supercapacitor Applications

  • D. Karthigaimuthu,
  • Abdel-Hamid I. Mourad,
  • Elangovan Thangavel

摘要

The attention toward supercapacitors, especially hybrid ones, has surged due to their distinctive electrochemical properties. The high performance in specific capacitanceSpecific capacitance, stability, energy, and power density makes hybrid nanostructured materialsNanostructured materials, known for their cost-effectiveness and unique attributes, a promising renewable option for eco-friendly energy storage devices. This chapter explains the ideas, types, properties, and ways to make electrode materials for hybrid supercapacitorsHybrid supercapacitors. This chapter emphasizes various materials like grapheneGraphene-metal oxide hybridsGraphene-metal oxide hybrids, Li- and Na-ion hybrids, polymer-mixed hybrids, organic-inorganic hybrids, advanced nano-hybrid metal-organic frameworksMetal-Organic Frameworks (MOFs), and flexible, wearable-based nano-hybrid materials, aiming to make hybrid supercapacitorsHybrid supercapacitors better.