M. A. Reshaka Kavindi, Francis Ngwane Nkede, Fanze Meng, Mohammad Hamayoon Wardak, Yan Xirui, Tanvir Ahamed, Fumina Tanaka, Fumina Tanaka, K.S.P. Amaratunga, Fumihiko Tanaka, Fumihiko Tanaka
Carbon quantum dots (CQDs) were synthesized from pumpkin peel waste by a hydrothermal method and embedded in carboxymethyl cellulose (CMC) and gelatin (Gel) to develop a biodegradable and functional food packaging for preserving fruits. The CQDs were uniformly dispersed in the CMC/Gel solution, forming an unbroken, compact film with strong bonds within the polymer chains. The tensile strength of CQDs incorporated films increased by 78-147% compared to the control sample. Interestingly, the 3% CQDs concentrated on film exhibited 72.5 ± 1.3% and 94.3 ± 2.1% UV-A and UV-B blocking capabilities, respectively, while the water vapor permeability decreased by 12.32%. Also, the water contact angle of the films was expanded by 12.87-26.14% with the addition of CQDs. The CMC/Gel/PP_CQDs 3% film exhibited the potent antioxidant efficacy (88.58%) against the DPPH. CQDs incorporated formulations did show a strong resistance effect against the microbial pathogens and non-toxic at concentrations below 2 mg/mL in the human colorectal adenocarcinoma cells (Caco-2) lines. Cherry tomatoes packaged with CMC/Gel/PP_CQDs 3% composite film exhibited the best quality preservation among all the formulations.