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Synthesis Approaches for Nanodielectric Materials

  • Vinod Kashyap,
  • Sukhvant Singh,
  • Sumit,
  • Lipeeka Rout

摘要

It is highly critical to acquire desirable performance and durability of materials for various engineering applicationsApplications. To overcome these issues, in recent years, studies on nanodielectric materialNanodielectric materials are found to be one of the most dynamic fields of research among scientists. A multi-component nanostructure that can lead to the change of several dielectric propertiesDielectric properties is termed as nanodielectricNanodielectrics. These materials provide extensively high-dielectric propertiesDielectric properties due to which they can act as a suitable material for energy storageEnergy storage device applicationsApplications, in particular for capacitors. Nanodielectric materialsNanodielectric materials were associated with high-dielectricDielectrics and insulating properties. Such properties of nanodielectric materialNanodielectric materials have commonly been observed in nanocompositesNanocomposites and ceramics materials. More recently, nanoparticles were being incorporated in various metal oxideMetal Oxide and polymerPolymer support to achieve the enhanced dielectric propertyDielectric properties of the materials. Fundamentally, the basic principle of nanodielectric materialsNanodielectric materials lies on a large internal area of the surface. Owing to their wide range of properties, it is highly necessary to make the nanodielectric materialNanodielectric materials using the proper synthetic procedure. The most important factor to achieve the dielectric propertyDielectric properties of the material is to synthesize the nanocompositeNanocomposites or to incorporate the nanoparticle with uniform size distribution. A well-dispersed nanoparticle can enhance the dielectric propertyDielectric properties of the material. Since many variables can affect the dielectric propertyDielectric properties such as particle size, dispersion, and aspect ratio, synthesis of these materials is of high priority and highly important. Keeping the above in mind, the current chapter will give a thorough study of various synthetic methods which can be utilized for the synthesis of suitable nanodielectric materialNanodielectric materials. In the current chapter, the authors have explained various available methods for the synthesis of nanodielectric materialNanodielectric materials.