Cargando…

Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications

There is an increasing demand for sustainable and safe packaging technologies to improve consumer satisfaction, reduce food loss during storage and transportation, and track the quality status of food throughout its distribution. This study reports the fabrication of colorimetric pH-indicative and f...

Descripción completa

Detalles Bibliográficos
Autores principales: Abu-Thabit, Nedal, Hakeem, Abbas Saeed, Mezghani, Khaled, Ratemi, Elaref, Elzagheid, Mohamed, Umar, Yunusa, Primartomo, Adhi, Al Batty, Sirhan, Azad, Abdul Kalam, Al Anazi, Sami, Ahmad, Ayman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582257/
https://www.ncbi.nlm.nih.gov/pubmed/32977576
http://dx.doi.org/10.3390/s20195462
_version_ 1783599149154828288
author Abu-Thabit, Nedal
Hakeem, Abbas Saeed
Mezghani, Khaled
Ratemi, Elaref
Elzagheid, Mohamed
Umar, Yunusa
Primartomo, Adhi
Al Batty, Sirhan
Azad, Abdul Kalam
Al Anazi, Sami
Ahmad, Ayman
author_facet Abu-Thabit, Nedal
Hakeem, Abbas Saeed
Mezghani, Khaled
Ratemi, Elaref
Elzagheid, Mohamed
Umar, Yunusa
Primartomo, Adhi
Al Batty, Sirhan
Azad, Abdul Kalam
Al Anazi, Sami
Ahmad, Ayman
author_sort Abu-Thabit, Nedal
collection PubMed
description There is an increasing demand for sustainable and safe packaging technologies to improve consumer satisfaction, reduce food loss during storage and transportation, and track the quality status of food throughout its distribution. This study reports the fabrication of colorimetric pH-indicative and flame-retardant nanocomposite films (NCFs) based on polyvinyl alcohol (PVA) and nanoclays for smart and safe food packaging applications. Tough, flexible, and transparent NCFs were obtained using 15% nanoclay loading (PVA-15) with superior properties, including low solubility/swelling in water and high thermal stability with flame-retardant behavior. The NCFs showed average mechanical properties that are comparable to commercial films for packaging applications. The color parameters were recorded at different pH values and the prepared NCFs showed distinctive colorimetric pH-responsive behavior during the transition from acidic to alkaline medium with high values for the calculated color difference (∆E ≈ 50). The prepared NCFs provided an effective way to detect the spoilage of the shrimp samples via monitoring the color change of the NCFs during the storage period. The current study proposes the prepared NCFs as renewable candidates for smart food packaging featuring colorimetric pH-sensing for monitoring food freshness as well as a safer alternative choice for applications that demand films with fire-retardant properties.
format Online
Article
Text
id pubmed-7582257
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75822572020-10-28 Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications Abu-Thabit, Nedal Hakeem, Abbas Saeed Mezghani, Khaled Ratemi, Elaref Elzagheid, Mohamed Umar, Yunusa Primartomo, Adhi Al Batty, Sirhan Azad, Abdul Kalam Al Anazi, Sami Ahmad, Ayman Sensors (Basel) Article There is an increasing demand for sustainable and safe packaging technologies to improve consumer satisfaction, reduce food loss during storage and transportation, and track the quality status of food throughout its distribution. This study reports the fabrication of colorimetric pH-indicative and flame-retardant nanocomposite films (NCFs) based on polyvinyl alcohol (PVA) and nanoclays for smart and safe food packaging applications. Tough, flexible, and transparent NCFs were obtained using 15% nanoclay loading (PVA-15) with superior properties, including low solubility/swelling in water and high thermal stability with flame-retardant behavior. The NCFs showed average mechanical properties that are comparable to commercial films for packaging applications. The color parameters were recorded at different pH values and the prepared NCFs showed distinctive colorimetric pH-responsive behavior during the transition from acidic to alkaline medium with high values for the calculated color difference (∆E ≈ 50). The prepared NCFs provided an effective way to detect the spoilage of the shrimp samples via monitoring the color change of the NCFs during the storage period. The current study proposes the prepared NCFs as renewable candidates for smart food packaging featuring colorimetric pH-sensing for monitoring food freshness as well as a safer alternative choice for applications that demand films with fire-retardant properties. MDPI 2020-09-23 /pmc/articles/PMC7582257/ /pubmed/32977576 http://dx.doi.org/10.3390/s20195462 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Abu-Thabit, Nedal
Hakeem, Abbas Saeed
Mezghani, Khaled
Ratemi, Elaref
Elzagheid, Mohamed
Umar, Yunusa
Primartomo, Adhi
Al Batty, Sirhan
Azad, Abdul Kalam
Al Anazi, Sami
Ahmad, Ayman
Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications
title Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications
title_full Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications
title_fullStr Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications
title_full_unstemmed Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications
title_short Preparation of pH-Indicative and Flame-Retardant Nanocomposite Films for Smart Packaging Applications
title_sort preparation of ph-indicative and flame-retardant nanocomposite films for smart packaging applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582257/
https://www.ncbi.nlm.nih.gov/pubmed/32977576
http://dx.doi.org/10.3390/s20195462
work_keys_str_mv AT abuthabitnedal preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT hakeemabbassaeed preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT mezghanikhaled preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT ratemielaref preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT elzagheidmohamed preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT umaryunusa preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT primartomoadhi preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT albattysirhan preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT azadabdulkalam preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT alanazisami preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications
AT ahmadayman preparationofphindicativeandflameretardantnanocompositefilmsforsmartpackagingapplications