Bacterial Synthesis and Characterization of Metals, Chalcogenite and Chalcopyrite Nanoparticles


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Çakıcı T., Özdal M.

1st INTERNATIONAL SYMPOSIUM ON RECENT ADVANCES IN FUNDAMENTAL AND APPLIED SCIENCES, Erzurum, Türkiye, 10 - 12 Eylül 2021, ss.136

  • Yayın Türü: Bildiri / Özet Bildiri
  • Basıldığı Şehir: Erzurum
  • Basıldığı Ülke: Türkiye
  • Sayfa Sayıları: ss.136
  • Atatürk Üniversitesi Adresli: Evet

Özet

      vNanotechnology is an interdisciplinary technology covering fields of physics, biology, chemistry, and medicine and material science. In recent years, there have been significant developments in the field of nanotechnology, with numerous methodologies developed to synthesize nanoparticles of particular shape and size depending on specific requirements. New applications of NPs and nanomaterial’s are increasing day by day [1-2]

      vResearchers are used many different methods (chemical, physical, and biological) to synthesis nanoparticles which are of the required composition, shape and size because these factors significantly affect the properties of the material.

      vAmong the different synthesis methods, using microorganisms for nanoparticles synthesis can be suitably scaled up for large-scale synthesis of nanoparticles. 

          vNanotechnology is an interdisciplinary technology covering fields of physics, biology, chemistry, and medicine and material science. In recent years, there have been significant developments in the field of nanotechnology, with numerous methodologies developed to synthesize nanoparticles of particular shape and size depending on specific requirements. New applications of NPs and nanomaterial’s are increasing day by day [1-2]

          vResearchers are used many different methods (chemical, physical, and biological) to synthesis nanoparticles which are of the required composition, shape and size because these factors significantly affect the properties of the material.

          vAmong the different synthesis methods, using microorganisms for nanoparticles synthesis can be suitably scaled up for large-scale synthesis of nanoparticles.