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Advanced Synthesis Strategies for Enhanced Energy Storage Performance

  • Jayanti Mishra,
  • Arabinda Baruah,
  • Jyotirekha Dutta

摘要

This chapter discussesEnergy storage performance the synthesis of the popular materials used in energy storage devices. The popular materials used in such devices are layered double hydroxidesLayered Double Hydroxides (LDHs), grapheneGraphene and polymer-based nanostructuresPolymer-Based Nanostructures, perovskitesPerovskites, MOFsMetal-Organic Frameworks (MOFs) and COFsCovalent Organic Frameworks (COFs), MxeneMXene and MBenesMBenes, hydrogelsHydrogels, waste biomass-derived materialsWaste Biomass-Derived Materials, nanocompositesNanocomposites, etc. for energy storage applications. These devices include supercapacitorsSupercapacitors, mechanical and thermal energy storageThermal energy storage devices andMechanical Energy Storage various batteries working upon Na-ion, K-ion, Zn-ion, Al-ion and Li-ion. In this chapter, various synthesis methods like co-precipitationCo-precipitation, solvothermal, hydrothermal, electrospinningElectrospinning, self-assemblySelf-Assembly, hot injection, sonochemical methodSonochemical method, etc. are discussed for the synthesis of suitable materials for application in energy storage devices.