EventsThe 4th International Electronic Conference on Applied Sciences
Published
This submission belongs to the session B. Nanosciences, Chemistry and Materials Science of the event The 4th International Electronic Conference on Applied Sciences
Published date
14 Nov, 2023
Academic Editor
author-avatarManoj Gupta
Citation
Achanai Buasri, Pitchayapak Poosri, Patharawadee Ninprasert, Areeya Niyasom, Vorrada Loryuenyong, Preparation and Characterization of Plant Extracts Loaded PVA/GO Nanocomposites Films for Food Packaging, in Proceedings of The 4th International Electronic Conference on Applied Sciences, 27 October–10 November 2023, MDPI: Basel, Switzerland, doi: 10.3390/ASEC2023-15980
Share
Email
Facebook
Twitter
LinkedIn

Preparation and Characterization of Plant Extracts Loaded PVA/GO Nanocomposites Films for Food Packaging

image
Pitchayapak Poosri 2
Patharawadee Ninprasert 2
Areeya Niyasom 2
image
1. Department of Materials Science and Engineering, Faculty of Engineering and Industrial Technology, Silpakorn University, Nakhon Pathom, 73000, Thailand, Thailand
2. Silpakorn University
Abstract

Antibacterial agents produced from plant extracts are seen as a promising application in food packaging. Essential oils extracts, on the other hand, often have drawbacks such as long-term instability, limited bioavailability, and fast burst release. The study's primary goal was to develop poly(vinyl alcohol) (PVA)/graphene oxide (GO) nanocomposites films for use in food packaging utilizing moringa (M) and guava (G) leaf extracts. The characteristics of polymer films were enhanced by adding a small quantity of GO as reinforcing fillers, and then adding phenolic and flavonoids compounds as antibacterial agents. First, GO and plant extracts were dispersed through the use of ultrasonication. Next, all chemicals were introduced in the PVA matrix with the use of a straightforward and eco-friendly solution casting approach. Water was used as the solvent for this process. As a consequence of these findings, PVA/GO/M3% films demonstrated superior tensile strength (73.63 MPa), %elongation at break (641.94%), and modulus (23.84 MPa) in comparison to neat PVA films. For GO was an effective reinforcing filler, while phenolic and flavonoid compounds were, respectively, crystallization agents. They were distributed randomly in the PVA matrix, with no preferred orientation and some agglomeration. Furthermore, the antibacterial activity of the synthetic films loaded with M and G leaf extract was low when tested against Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus).

Keywords
product innovation
polymer nanocomposites
poly(vinyl alcohol)
graphene oxide
plant extract
mechanical properties
antibacterial activity
Manuscript
Influence of Frequency-Sweeping on Discrete and Continuous Phase Distributions Generated in Alkali-Metal Vapours
Distribution of Natural Radionuclides in Ama Fatma oil shale, Morocco