4.8 Article

Glycerol-Based Dendrimer Nanocomposite Film as a Tunable pH-Sensor for Food Packaging

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 13, 期 19, 页码 23268-23281

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c05145

关键词

responsive food packaging; glycerol-based nanocomposite; miniemulsion polymerization; dendrimer macromonomer; pH-sensor

资金

  1. U.S. Department of Agriculture-National Institute of Food and Agriculture (USDA-NIFA) [2016-11231]
  2. USDA-NIFA [2015-3842023701]
  3. GEM National Consortium Fellowship Program

向作者/读者索取更多资源

Research is focused on creating a responsive packaging material that can detect food spoilage in real-time by monitoring changes in pH, aiming to reduce food waste.
Large amounts of food are wasted during the food supply chain. This loss is in part due to consumer confusion over dates on food packages that can indicate a variety of quality indicators in the product (e.g., expiration date, best by date, sell by dates, etc.). To reduce this food loss, much research has been focused on the films that offer simple and easily manipulated indication systems to detect food spoilage. However, these materials are usually hydrophilic biopolymers that can detect the food spoilage in a wide pH range but do not provide highly sensitive real-time measurements. In this work, a glycerol-based nanocomposite core-shell latex film was synthesized to create a responsive packaging material that can provide real-time pH detection of food with high sensitivity. First, the pH-responsive dendrimer comonomer was synthesized from glycerol and diamine. Then, the nanoencapsulation polymerization process via miniemulsion was conducted to form a core-shell structure with tunable nanoshell thickness for a sensible pH-responsive release (<0.5 pH change). Next, the flexible film encapsulated a color-indicative dye that provided highly sensitive and visible color changes as both the pH dropped and the time elapsed in the food. This film also provided a barrier to water and heat and resisted deformation. Ultimately, this nanocomposite flexible film pending a pH sensor has the potential as an intelligent food packaging material for a universal, accurate, easy-to-use, and real-time food spoilage monitoring system to reduce food waste.

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