4.7 Article

Development of a BTB-/TBA+ ion-paired dye-based CO2 indicator and its application in a multilayered intelligent packaging system

Journal

SENSORS AND ACTUATORS B-CHEMICAL
Volume 282, Issue -, Pages 359-365

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2018.11.073

Keywords

BTB-/TBA(+) ion-paired dye; bPEI; CO2 indicator; Colorimetric detection; Multilayered kimchi packaging

Funding

  1. High Value-added Food Technology Development Program of the Korea Institute of Planning and Evaluation for Technology of Agriculture, Forestry, Fisheries and Food, Republic of Korea [314074-3]
  2. KIST grant [2E27940]

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Many visual indicators have been developed to provide product quality information through their incorporation into intelligent food packaging systems. In particular, the colorimetric changes undergone by the pH-sensitive dyes that are present in food packages can be used to monitor food quality without destroying the package. However, some difficulties remain in incorporating these dyes into commercial packaging materials because the dyes are often strongly hydrophilic, which leads to the migration of these dyes into food with high water contents through simple contact; additionally, these dyes do not easily mix with the hydrophobic polymers of packaging materials. To overcome these problems, we prepared a bromothymol blue (BTB-)/tetra-butylammonium (TBA(+) ) ion-paired dye and used it to produce a CO2-sensitive intelligent packaging film. Branched polyethylenimine was added to the indicator solution to improve the film's sensitivity to CO2. The formation of ion pairs was confirmed through Fourier transform infrared spectroscopy, and film characteristics, such as color changes in the presence of CO2 and thermal properties, were examined. Finally, we manufactured multilayered packaging films using the BTB-/TBA(+) ion-paired dye and used these to measure CO2 changes in kimchi packaging during the fermentation process. CO2- mediated color changes were easily visible to the naked eye, demonstrating the applicability of our sensor in commercial food packaging films.

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