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March 14, 2026Packaging Technology and Science2 citations

Development and Characterization of Smart, Biodegradable Gelatin‐Based Films With Graphene Oxide and Anthocyanins for Real‐Time Fish Freshness Monitoring

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ACA. M. Sarwaruddin ChowdhuryMIMd Zohurul IslamKMKamrunnaher Monalisa

Key Points

  • Aim to develop biodegradable packaging films using gelatin and graphene oxide to monitor fish freshness.
  • Developed gelatin-based films with graphene oxide and anthocyanins.
  • Characterization conducted using FT-IR, SEM–EDS, UV–Vis, TGA–DTG.
  • Conducted soil burial tests for biodegradation assessment.
  • Tensile strength of films improved by 75.8% with graphene oxide incorporation.
  • Demonstrated rapid biodegradation with ~97% weight loss within 7 days.
  • Color transitions in films correlated strongly with fish pH and freshness indicators.

Abstract

ABSTRACT This study focused on the development of a multifunctional, biodegradable and intelligent food packaging film based on fish scale–derived gelatin reinforced with bio‐synthesized graphene oxide (GO) and pH‐responsive anthocyanins for real‐time fish freshness monitoring. Gelatin extracted from underutilized fish scales served as the primary biopolymer, while GO synthesized from wood apple shells was incorporated to overcome gelatin's inherent mechanical, thermal and barrier limitations. Anthocyanins isolated from jamun fruit were integrated as natural colourimetric indicators. Structural and physicochemical characterization using FT‐IR, SEM–EDS, UV–Vis, TGA‐DTG and mechanical analyses confirmed effective incorporation and homogeneous dispersion of GO and anthocyanins within the gelatin matrix. The incorporation of GO/anthocyanin increased tensile strength by 75.8% relative to the control film, improved thermal stability, reduced water vapour permeability and enhanced UV‐blocking performance. Soil burial tests demonstrated rapid biodegradation of the nanocomposite films, with GO‐containing formulations exhibiting ~97% weight loss within 7 days. The anthocyanin‐containing film exhibited distinct pH‐dependent colour transitions during fish storage at 25°C, correlating strongly with fish pH (6.9–8.4; R 2 = 0.94) and TVB‐N content (7.2–36.5 mg/100 g; R 2 = 0.97). These findings demonstrate that the developed gelatin/GO/anthocyanin composite films function as mechanically reinforced, rapidly biodegradable packaging materials with reliable real‐time freshness‐sensing capability.

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Cite This Study

Chowdhury et al. (2026) studied this question.

synapsesocial.com/papers/69b4adc718185d8a39801976https://doi.org/10.1002/pts.70070
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