This chapter explores the synthesisSynthesis of nanomaterialsNanomaterials used as electromagnetic (EMElectromagnetic (EM)) absorbersAbsorber. Such materials have unique properties that allow them to selectively absorb and attenuate EMElectromagnetic (EM) waves, making them useful in various applications. The chapter covers various methods for synthesizing nanomaterialsNanomaterials, including their advantages and limitations. It also discusses the key factors that affect the EMElectromagnetic (EM) absorption properties of nanomaterialsNanomaterials, such as size, shape, compositionComposition, crystal structureCrystal Structure Morphology, and surface morphologyMorphologies. The chapter concludes by highlighting the multidisciplinary nature of this field and the potential for continued developments in nanotechnologyNanotechnology to produce new and improved EMElectromagnetic (EM) absorbersAbsorber.

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Synthesis of Nanomaterials Used as EM Absorbers

  • Shiban K. Koul,
  • M. Praveen,
  • Karthikeya G. S.

摘要

This chapter explores the synthesisSynthesis of nanomaterialsNanomaterials used as electromagnetic (EMElectromagnetic (EM)) absorbersAbsorber. Such materials have unique properties that allow them to selectively absorb and attenuate EMElectromagnetic (EM) waves, making them useful in various applications. The chapter covers various methods for synthesizing nanomaterialsNanomaterials, including their advantages and limitations. It also discusses the key factors that affect the EMElectromagnetic (EM) absorption properties of nanomaterialsNanomaterials, such as size, shape, compositionComposition, crystal structureCrystal Structure Morphology, and surface morphologyMorphologies. The chapter concludes by highlighting the multidisciplinary nature of this field and the potential for continued developments in nanotechnologyNanotechnology to produce new and improved EMElectromagnetic (EM) absorbersAbsorber.