To overcome the limitations of conventional biopolymer films and reduce reliance on petroleum-based plastics, a nacre-inspired film was developed via 3D printing. During printing process, shear-induced alignment of mica flakes was achieved within a sodium alginate/xanthan gum matrix. Additionally, zinc oxide nanoparticles (ZnO NPs) were incorporated to achieve a synergistic reinforcement effect. Structural analysis revealed that the mica flakes within the film exhibited an oriented distribution, with ZnO NPs uniformly embedded in the interlayer voids, and hydrogen bonding assisted in forming a dense network of the components. Performance testing showed that the tensile strength rose from 13.8 MPa to 62.9 MPa. Improvements in water resistance and thermal stability were also observed. Furthermore, the material exhibited outstanding comprehensive protective properties, including a low water vapor permeability value of 7.587 × 10−11 g·m/m2·Pa·s, an ultraviolet blocking rate of 99.37% at a wavelength of 280 nm, and the ability to completely inhibit target bacterial strains, while also possessing good biodegradability and recyclability. Shelf-life tests indicated that the film fabricated in this work could notably prolong the shelf life of strawberries. Biocompatibility test results indicated that the film was safe and non-toxic, and showed no significant cytotoxicity.
Carboxymethyl chitosan (CMCS) films exhibit limited functionality, a constraint that impedes their large-scale application in food packaging. The objective of this study was to modify CMCS films with longan seed extracts (LSE) to enhance their comprehensive performance. The fundamental physicochemical properties of LSE...
Bo-Jie Chen, H. E. Khoo, Xia Li et al.· Food Chemistry· 0 citations
Chitosan-based films suffer from issues such as poor plasticity and inadequate barrier properties. Herein, high toughness chitosan-based films were fabricated by chemical crosslinking between chitosan with acetoacetylated poly(vinyl alcohol) via the Mannich multicomponent reaction. The structure and properties of the r...
Hao-Ming Gu, Xi-Ju Wang, Shui-Bo Zheng et al.· International Journal of Bio...· 0 citations
The development of multifunctional polymer nanocomposites with integrated sensing capabilities has attracted considerable research interest for advanced engineering applications. In this study, carbon dot (CD)-reinforced polylactic acid (PLA) nanocomposite filaments were fabricated via melt extrusion and subsequently...
Md Masrur Rahman Majba, R. Tyagi, Radhey Shyam Rai et al.· Frontiers in Materials· 0 citations
Perishable fruits have a short shelf life due to their susceptibility to quality deterioration after harvest. Implementing appropriate preservation measures is an effective strategy to maintain fruit quality and enhance market value. However, traditional polyethylene films not only offer limited functionality but also...
Zhuo-Ya Liang, Yu-Chao Tang, Hong-Yan Chen· International Journal of Bio...· 0 citations
Overall, the ternary formulation showed higher peak compressive strength, significantly lower equilibrium swelling, favorable extract-based cytocompatibility, and preliminary antibacterial activity under the tested conditions, which support further investigation of this material as an antibacterial wound-dressing candi...
Farahnaz Davoodi, S. Javanshir· Scientific Reports· 0 citations
Integrating walnut green husk-derived carbonaceous nano-lamellae (WCNL) into casein films (CF) addresses the challenge of combining mechanical strength, barrier performance, and antibacterial activity in sustainable food packaging. The hydrothermally synthesized WCNL features defect-rich hierarchical networks that indu...
Zheng-Yong Yang, Wei-Jia Yang, Jun-Tao Zhang et al.· Small Methods· 0 citations
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