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The Past, Present, and Potential Future of Dielectric Nanomaterials

  • S. Chandraleka,
  • V. Balasubramani,
  • R. Sasikumar,
  • M. R. Kuppusamy,
  • T. M. Sridhar,
  • Pragati Kumar,
  • Nupur Saxena

摘要

Dielectric nanomaterialsDielectric nanomaterials with a relatively high dielectricDielectrics loss tangent are used in various fields such are transformers, solar cells, transistors, capacitors, energy storageEnergy storage devices, microwave, and nanophotonic applicationsApplications. An abundance of bonded surface charges is present on the surface of these nanomaterials that change their functional properties. Dielectric nanomaterialsDielectric nanomaterials help to improve the dispersion of nanomaterials by applying them as thin film layers or as composites. These dielectric nanomaterialsDielectric nanomaterials provide less space charge and a lower electric field by forming a multilayer composite and extending the life of electronicElectronics devices and electric motors. In this chapter, the past, present, and potential future of dielectric nanomaterialsDielectric nanomaterials and their surface modification with polymersPolymer or several composites such are nanodielectricNanodielectrics of metals and metal oxidesMetal Oxide including their characteristics are highlighted. The importance of dielectric nanomaterialsDielectric nanomaterials and flexible nanocompositeNanocomposites materials with their wide range of applicationsApplications for energy storageEnergy storage, electronicsElectronics, sensorsSensors, and their potential deliverables as futuristic devices are presented along with their future scope.