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Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability

Pack integrity is essential for the success of modified atmosphere packaging of food products. Colorimetric oxygen leak indicators or tags are simple and smart tools that can depict the presence or absence of oxygen within a package. However, not many bio-based electrospun materials were explored fo...

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Autores principales: Panwar, Shivam, Panjagari, Narender Raju, Singh, Ashish Kumar, Deshwal, Gaurav Kr, Badola, Richa, Minz, Prashant Saurabh, Goksen, Gulden, Rusu, Alexandru, Trif, Monica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143945/
https://www.ncbi.nlm.nih.gov/pubmed/35631990
http://dx.doi.org/10.3390/polym14102108
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author Panwar, Shivam
Panjagari, Narender Raju
Singh, Ashish Kumar
Deshwal, Gaurav Kr
Badola, Richa
Minz, Prashant Saurabh
Goksen, Gulden
Rusu, Alexandru
Trif, Monica
author_facet Panwar, Shivam
Panjagari, Narender Raju
Singh, Ashish Kumar
Deshwal, Gaurav Kr
Badola, Richa
Minz, Prashant Saurabh
Goksen, Gulden
Rusu, Alexandru
Trif, Monica
author_sort Panwar, Shivam
collection PubMed
description Pack integrity is essential for the success of modified atmosphere packaging of food products. Colorimetric oxygen leak indicators or tags are simple and smart tools that can depict the presence or absence of oxygen within a package. However, not many bio-based electrospun materials were explored for this purpose. Ultraviolet light-activated kappa-carrageenan-based smart oxygen indicating tag was developed using the electrospinning technique in this study and its stability during storage was determined. Kappa-carrageenan was used with redox dye, sacrificial electron donor, photocatalyst, and solvent for preparing oxygen indicating electrospun tag. Parameters of electrospinning namely flow rate of the polymer solution, the distance between spinneret and collector, and voltage applied were optimized using Taguchi L9 orthogonal design. Rheological and microstructural studies revealed that the electrospinning solution was pseudoplastic and the mat fibers were compact and non-woven with an average fiber size of 1–2 microns. Oxygen sensitivity at different oxygen concentrations revealed that the tag was sensitive enough to detect as low as 0.4% oxygen. The developed tag was stable for at least 60 days when stored in dark at 25 °C and 65% RH. The developed mat could be highly useful in modified atmosphere packaging applications to check seal integrity in oxygen devoid packages.
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spelling pubmed-91439452022-05-29 Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability Panwar, Shivam Panjagari, Narender Raju Singh, Ashish Kumar Deshwal, Gaurav Kr Badola, Richa Minz, Prashant Saurabh Goksen, Gulden Rusu, Alexandru Trif, Monica Polymers (Basel) Article Pack integrity is essential for the success of modified atmosphere packaging of food products. Colorimetric oxygen leak indicators or tags are simple and smart tools that can depict the presence or absence of oxygen within a package. However, not many bio-based electrospun materials were explored for this purpose. Ultraviolet light-activated kappa-carrageenan-based smart oxygen indicating tag was developed using the electrospinning technique in this study and its stability during storage was determined. Kappa-carrageenan was used with redox dye, sacrificial electron donor, photocatalyst, and solvent for preparing oxygen indicating electrospun tag. Parameters of electrospinning namely flow rate of the polymer solution, the distance between spinneret and collector, and voltage applied were optimized using Taguchi L9 orthogonal design. Rheological and microstructural studies revealed that the electrospinning solution was pseudoplastic and the mat fibers were compact and non-woven with an average fiber size of 1–2 microns. Oxygen sensitivity at different oxygen concentrations revealed that the tag was sensitive enough to detect as low as 0.4% oxygen. The developed tag was stable for at least 60 days when stored in dark at 25 °C and 65% RH. The developed mat could be highly useful in modified atmosphere packaging applications to check seal integrity in oxygen devoid packages. MDPI 2022-05-21 /pmc/articles/PMC9143945/ /pubmed/35631990 http://dx.doi.org/10.3390/polym14102108 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Panwar, Shivam
Panjagari, Narender Raju
Singh, Ashish Kumar
Deshwal, Gaurav Kr
Badola, Richa
Minz, Prashant Saurabh
Goksen, Gulden
Rusu, Alexandru
Trif, Monica
Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability
title Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability
title_full Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability
title_fullStr Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability
title_full_unstemmed Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability
title_short Electrospun Smart Oxygen Indicating Tag for Modified Atmosphere Packaging Applications: Fabrication, Characterization and Storage Stability
title_sort electrospun smart oxygen indicating tag for modified atmosphere packaging applications: fabrication, characterization and storage stability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143945/
https://www.ncbi.nlm.nih.gov/pubmed/35631990
http://dx.doi.org/10.3390/polym14102108
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