Nanoscience and Nanotechnology Research
ISSN (Print): 2372-4668 ISSN (Online): 2372-4676 Website: https://www.sciepub.com/journal/nnr Editor-in-chief: Mehrdad Hamidi, Javad Verdi
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Nanoscience and Nanotechnology Research. 2023, 7(1), 1-5
DOI: 10.12691/nnr-7-1-1
Open AccessArticle

Synthesis of Zinc Oxide Nanoparticles with a Green Method Route

Mahtab Yaghoubi1,

1Islamic Azad University, Tehran, Iran

Pub. Date: April 05, 2023

Cite this paper:
Mahtab Yaghoubi. Synthesis of Zinc Oxide Nanoparticles with a Green Method Route. Nanoscience and Nanotechnology Research. 2023; 7(1):1-5. doi: 10.12691/nnr-7-1-1

Abstract

The current study examines the production of Zinc Oxide nanoparticles. Nanoparticles of Zinc oxide were successfully synthesized with a green method route. The nanoparticles of different materials have Many applications in medical sciences, chemicals, construction, health, etc. Zinc oxide is one of the most widely used substances in the health and cosmetics industries due to its antibacterial virtues of this Substance. The synthesis process was accomplished using Stachys lavandulifolia. The production of Zinc Oxide NPS has several methods. Still, the use of plants for the synthesis of this substance (green Synthesis) has superiorities such as diminishing pollution, and output costs, and not genesis harmful chemical side outcomes. The extract of Stachys lavandulifolia was obtained at 100 Celsius and used for. The NPS were characterized by different techniques containing XRD, SEM, and DLS as the results revealed that the Particle size was between 30 and 50 nm and their shape was spherical.

Keywords:
zinc oxide nanoparticle green methode

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References:

[1]  U.S. Environmental protection agency: Characteristic of particle size categories from the EPA website.
 
[2]  Doblem. M, Kruthiventi Ak. Green chemistry and engineering. Cambridge: Academic press.2007.
 
[3]  Silver Batista, C.A; Larson, R. G; Kotov, N.A. (9 October 2015), Nonadditivity of nanoparticle interactions. Science. 350 (6257): 1242477-1242477.
 
[4]  M.J. Osmond. M.J. McCall. Zinc oxide nanoparticles in modern sunscreens: An analysis of potential exposure and hazard, nanotoxicology, Vol. 4, no.1, PP.15-41, 2010.
 
[5]  Shabani.M, Rahaiee, S, Zare, M, J, S. (2020). Green synthesis of ZnO nanoparticles using seed extract; Biological functions and photocatalytic, degradation properties. www.Elsevier.com.
 
[6]  Sadee Shojai. B & et al. (2019). Biyosenthesize of Zno nanoparticle by using the Green Method. Microbe Press. No.1.
 
[7]  Mehdinezhad. N & Etal. (2015). Green Synthesize of ZNO. Agricultural and Natural University.
 
[8]  Jabarivand .S & Etal. (2019). Nano Synthesize of ZNO. Nanotechnology of an international conference. No. 923.
 
[9]  Rahimi Shah. M.G & Etal. (2019). The antibacterial activity of Zinc Oxide nanoparticles synthesized the green method. URL: http://yafte.Lums.ac.ir.
 
[10]  Clebsch, Betsy; Barner, Carol D. (2003). The New Book of Salvias. Timber Press. p. 198. ISBN 978-0-88192-560-9.