Laser Ablation Technique to Synthesize Ag Nanoparticles in Harsh Environment During Conjugation with Ovalbumin and Their Effects on Candida albicans

Open Access

Year : 2023 | Volume : 11 | Special Issue 02 | Page : 47 60
    By

    Yasmin A. Adi,

Abstract

In this study was developed a rapid, easy, eco-friendly and free-polutions method to AgNPs synthesized which was laser ablation technique to bulk target silver in harsh environment which was SBF due to salts and ions content cause silver nanoparticle aggregated via the interactions among nanoparticles and components of the ionic solution. So, was add ovalbumin to achived long term stability of colloidal AgNPs solution because of this protien has been used to decrease ionic strength and avoid nanoparticle agglomeratioin in biofluids by attached it to the AgNPs surfaces in the mixture, to protecting them from the NaCl and preventing aggregation.then, noticed the color change on the sample and examined it with a transmission, electron microscope to see itʹs size and shape, as well as the zeta potential to know itʹs cahrge, in addition to measuring it in FTIR and uv-vis spectrophotometer over a month to prove the stabillity of the sample. And applied of the silvernanoparticle solution and their dilutions on cultured media of C.albicans which isolated from human patients with candida infection.

Keywords: Silver nanoparticles (Ag NPs), pulse laser ablation (PLAL), UV-vis, FTIR, z-potential, TEM, Candida albicans

[This article belongs to Special Issue under section in Journal of Polymer and Composites (jopc)]

How to cite this article:
Yasmin A. Adi. Laser Ablation Technique to Synthesize Ag Nanoparticles in Harsh Environment During Conjugation with Ovalbumin and Their Effects on Candida albicans. Journal of Polymer and Composites. 2023; 11(02):47-60.
How to cite this URL:
Yasmin A. Adi. Laser Ablation Technique to Synthesize Ag Nanoparticles in Harsh Environment During Conjugation with Ovalbumin and Their Effects on Candida albicans. Journal of Polymer and Composites. 2023; 11(02):47-60. Available from: https://journals.stmjournals.com/jopc/article=2023/view=111690


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References


Special Issue Open Access Original Research
Volume 11
Special Issue 02
Received 08/12/2022
Accepted 31/01/2023
Published 28/06/2023
Publication Time 202 Days


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