Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activity

Cerium orthovanadate nanoparticles (CeVO4 NPs) were fabricated using urea-assisted facile sol-gel auto combustion method. X-ray diffraction (XRD) pattern revealed the crystal planes and size of synthesized CeVO4 NPs. The morphological shape and the crystalline nature of the NPs were examined by fiel...

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Main Authors: Suresh Ghotekar, Shreyas Pansambal, Khanderao Pagar, Onkar Pardeshi, Rajeshwari Oza
Format: Article
Language:English
Published: Iranian Chemical Society 2018-12-01
Series:Nanochemistry Research
Subjects:
Online Access:http://www.nanochemres.org/article_81109_1c65e46119b3823985f7b8719cd754b1.pdf
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spelling doaj-9e652243b0434e019e2b154e2c67bad22021-02-17T13:29:34ZengIranian Chemical SocietyNanochemistry Research2538-42792423-818X2018-12-013218919610.22036/ncr.2018.02.00881109Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activitySuresh Ghotekar0Shreyas Pansambal1Khanderao Pagar2Onkar Pardeshi3Rajeshwari Oza4Department of Applied Science and Humanities, G. M. Vedak Institute of Technology, Tala 402 111, University of Mumbai, Maharashtra, IndiaDepartment of Chemistry, S.N. Arts, D.J.M. Commerce and B.N.S. Science College, Sangamner 422605, Savitribai Phule Pune University, Maharashtra, IndiaDepartment of Chemistry, KKHA Arts, SMGL Commerce and SPHJ Science College, Chandwad, University of Pune, Maharashtra 423 101, IndiaDepartment of Electronics, KKHA Arts, SMGL Commerce and SPHJ Science College, Chandwad, University of Pune, Maharashtra 423 101, IndiaDepartment of Chemistry, S.N. Arts, D.J.M. Commerce and B.N.S. Science College, Sangamner 422605, Savitribai Phule Pune University, Maharashtra, IndiaCerium orthovanadate nanoparticles (CeVO4 NPs) were fabricated using urea-assisted facile sol-gel auto combustion method. X-ray diffraction (XRD) pattern revealed the crystal planes and size of synthesized CeVO4 NPs. The morphological shape and the crystalline nature of the NPs were examined by field emission scanning electron microscopy (FESEM). Energy-dispersive X-ray spectroscopy (EDX) affirmed the presence of elemental composition and purity of the fabriacated NPs. Fourier transform Infrared spectroscopy (FT-IR) confirmed the conceivable stretching frequency on the surface of CeVO4 NPs. UV–visible diffuse reflectance spectroscopy (DRS) absorption spectrum indicates the band gap is about 3.2 eV and the synthesized tetragonal CeVO4 NPs exhibited a broad photoluminescence in the UV–visible region. Besides, these CeVO4 NPs evinced antifungal activity against Candida albicans, Aspergillus niger, Aspergillus clavatus, Trichophyton rubrum, Trichophyton mentographytes, Epidermophyton floccosum and Microsporum gypseum. The studies describing the synthesis of CeVO4 NPs by simple sol-gel auto combustion method followed by the investigation of antifungal activities may be useful for research opening a new horizon in the field of nanotechnology.http://www.nanochemres.org/article_81109_1c65e46119b3823985f7b8719cd754b1.pdfnanotechnologycevo4 nanoparticlesantifungal activityphotoluminescence
collection DOAJ
language English
format Article
sources DOAJ
author Suresh Ghotekar
Shreyas Pansambal
Khanderao Pagar
Onkar Pardeshi
Rajeshwari Oza
spellingShingle Suresh Ghotekar
Shreyas Pansambal
Khanderao Pagar
Onkar Pardeshi
Rajeshwari Oza
Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activity
Nanochemistry Research
nanotechnology
cevo4 nanoparticles
antifungal activity
photoluminescence
author_facet Suresh Ghotekar
Shreyas Pansambal
Khanderao Pagar
Onkar Pardeshi
Rajeshwari Oza
author_sort Suresh Ghotekar
title Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activity
title_short Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activity
title_full Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activity
title_fullStr Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activity
title_full_unstemmed Synthesis of CeVO4 nanoparticles using sol-gel auto combustion method and their antifungal activity
title_sort synthesis of cevo4 nanoparticles using sol-gel auto combustion method and their antifungal activity
publisher Iranian Chemical Society
series Nanochemistry Research
issn 2538-4279
2423-818X
publishDate 2018-12-01
description Cerium orthovanadate nanoparticles (CeVO4 NPs) were fabricated using urea-assisted facile sol-gel auto combustion method. X-ray diffraction (XRD) pattern revealed the crystal planes and size of synthesized CeVO4 NPs. The morphological shape and the crystalline nature of the NPs were examined by field emission scanning electron microscopy (FESEM). Energy-dispersive X-ray spectroscopy (EDX) affirmed the presence of elemental composition and purity of the fabriacated NPs. Fourier transform Infrared spectroscopy (FT-IR) confirmed the conceivable stretching frequency on the surface of CeVO4 NPs. UV–visible diffuse reflectance spectroscopy (DRS) absorption spectrum indicates the band gap is about 3.2 eV and the synthesized tetragonal CeVO4 NPs exhibited a broad photoluminescence in the UV–visible region. Besides, these CeVO4 NPs evinced antifungal activity against Candida albicans, Aspergillus niger, Aspergillus clavatus, Trichophyton rubrum, Trichophyton mentographytes, Epidermophyton floccosum and Microsporum gypseum. The studies describing the synthesis of CeVO4 NPs by simple sol-gel auto combustion method followed by the investigation of antifungal activities may be useful for research opening a new horizon in the field of nanotechnology.
topic nanotechnology
cevo4 nanoparticles
antifungal activity
photoluminescence
url http://www.nanochemres.org/article_81109_1c65e46119b3823985f7b8719cd754b1.pdf
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AT khanderaopagar synthesisofcevo4nanoparticlesusingsolgelautocombustionmethodandtheirantifungalactivity
AT onkarpardeshi synthesisofcevo4nanoparticlesusingsolgelautocombustionmethodandtheirantifungalactivity
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