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The Effect of Nanofillers on the Functional Properties of Biopolymer-Based Films: A Review

机译:纳米填料对生物聚合物基薄膜功能特性的影响:综述。

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摘要

Waste from non-degradable plastics is becoming an increasingly serious problem. Therefore, more and more research focuses on the development of materials with biodegradable properties. Bio-polymers are excellent raw materials for the production of such materials. Bio-based biopolymer films reinforced with nanostructures have become an interesting area of research. Nanocomposite films are a group of materials that mainly consist of bio-based natural (e.g., chitosan, starch) and synthetic (e.g., poly(lactic acid)) polymers and nanofillers (clay, organic, inorganic, or carbon nanostructures), with different properties. The interaction between environmentally friendly biopolymers and nanofillers leads to the improved functionality of nanocomposite materials. Depending on the properties of nanofillers, new or improved properties of nanocomposites can be obtained such as: barrier properties, improved mechanical strength, antimicrobial, and antioxidant properties or thermal stability. This review compiles information about biopolymers used as the matrix for the films with nanofillers as the active agents. Particular emphasis has been placed on the influence of nanofillers on functional properties of biopolymer films and their possible use within the food industry and food packaging systems. The possible applications of those nanocomposite films within other industries (medicine, drug and chemical industry, tissue engineering) is also briefly summarized.
机译:来自不可降解塑料的废物正变得日益严重。因此,越来越多的研究集中在具有可生物降解特性的材料的开发上。生物聚合物是生产此类材料的绝佳原料。纳米结构增强的生物基生物聚合物薄膜已经成为一个有趣的研究领域。纳米复合膜是一组材料,主要由生物基天然(例如,壳聚糖,淀粉)和合成(例如,聚乳酸)聚合物以及纳米填料(粘土,有机,无机或碳纳米结构)组成,属性。环保型生物聚合物与纳米填料之间的相互作用导致纳米复合材料功能性的提高。取决于纳米填料的性质,可以获得纳米复合材料的新的或改善的性质,例如:阻隔性质,改善的机械强度,抗微生物和抗氧化性质或热稳定性。这篇综述汇编了有关生物聚合物的信息,这些生物聚合物被用作具有纳米填料作为活性剂的薄膜的基质。特别强调了纳米填料对生物聚合物薄膜功能特性的影响及其在食品工业和食品包装系统中的可能用途。还简要总结了这些纳米复合膜在其他行业(医学,药物和化学工业,组织工程)中的可能应用。

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