npcr

Natural Products Chemistry & Research

ISSN - 2329-6836

Short Communication - (2021) Volume 0, Issue 0

A novel mechanochemical synthesis of Zn and N doped Tin (II) Sulphide nanoparticles and its photocatalytic activity by the degradation of Brilliant Green dye.

Madhuri M. Bhagat
 

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Abstract

A novel mechanochemical method was used to synthesize the Zn (Metal) and N (Non-metal) doped and pure Tin (II) Sulphide. The synthesis was simply performed by hand grinding the reactants in mortar- pestle. The synthesised Zn and N doped Tin (II) Sulphide was characterised by the characterisation techniques SEM, EDX, XRD, UV-Visible Spectroscopy and photoluminescence Spectroscopy.  The formation of nano size particles of the SnS was confirmed by SEM. The Elemental analysis was confirmed by Energy Dispersive X-Ray Spectroscopy. The band gap was calculated with the help of UV- Visible Spectroscopy. The photoluminescence property of Zn and N doped and pure SnS was studied by the Photoluminescence Spectroscopy. The Photocatalytic activity of doped and pure Tin (II) Sulphide was studied by the successful degradation of Brilliant Green dye. The factors pH and photocatalyst concentration have found a great effect on the photocatalytic activity of Zn and N doped Tin (II) Sulphide and pure Tin (II) Sulphide.

Biography

Madhuri M Bhagat is working as a Research Scholar in the Department of Chemistry, in Dr. Babasaheb Ambedkar Technological University, Lonere, Raigad, Maharashtra, India. She has published 5 Research papers in Reputed International Journals.

Natural-Products-Chemistry-Research

Author Info

Madhuri M. Bhagat
 
1Ambedkar Technological University, India
 

Citation: MadhuriM.Bhagat ,Journal of Advanced Chemical Engineering A novel mechanochemical synthesis of Zn and N doped Tin (II) Sulphide nanoparticles and its photocatalytic activity by the degradation of Brilliant Green dye.. Petro Chemistry 2020, International Conference on Petro Chemical Engineering and Natural Resources, June 8-9, 2020,07.

Received: 24-Apr-2020 Published: 29-Sep-2020, DOI: 10.35248/2329-6836.21.S3-008

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