Title of article
Antifungal Efficacy of Chitosan-Modified Zinc Oxide Nanoparticles on Tube Sedge Products
Author/Authors
Pholnak, Pachara Department of Physics - Thaksin University, Phatthalung, Thailand , Khongbun, Jidapa Paphayomphittayakom School - SciUS-TSU, Phatthalung, Thailand , Suksom, Kullanan Paphayomphittayakom School - SciUS-TSU, Phatthalung, Thailand , Lertworapreecha, Monthon Department of Biology - Thaksin University, Phatthalung, Thailand , Suwanboon, Sumetha Department of Materials Science and Technology - Prince of Songkla University, Songkhla, Thailand , Sirisathitkul, Chitnarong Division of Physics - School of Science - Walailak University - Nakhon Si Thammarat, Thailand
Pages
10
From page
424
To page
433
Abstract
The antifungal properties of ZnO were implemented in the real handicraft and showed promising results for the value addition of local products by sun-screen and fungi protections. The inhibition of Aspergillus sp. growth on tube sedge basketry by zinc oxide (ZnO) was demonstrated. ZnO nanoparticles synthesized with chitosan capping agents were analyzed by X-ray diffractometry (XRD), Fourier transform infrared (FTIR) spectrophotometry and thermogravimetric analysis (TGA). The crystallite size consistent with electron microscope images and surface area of ZnO were dependent on the amounts of chitosan. ZnO exhibited a large ultraviolet (UV) absorbance in an entire 200-400 nm range when large crystallites agglomerated into bulky aggregates. In the case of small amounts of chitosan used, small crystallites tending to agglomerate in close contacts enhanced antifungal activity on pieces of tube sedge basketry. The fungi inhibition by this chitosan-modified ZnO was attributed to the stress response in fungal hyphae and generation of hydrogen peroxide.
Farsi abstract
فاقد چكيده فارسي
Keywords
Basketry , Chitosan , Fungicide , Tube , sedge ZnO
Journal title
Journal of NanoStructures
Serial Year
2020
Record number
2558325
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