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A review on innovations in polymeric nanocomposite packaging materials and electrical sensors for food and agriculture

机译:聚合物纳米复合材料包装材料创新与食品和农业电气传感器的综述

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摘要

The application of polymer nanocomposites packaging materials in industrial, food and agricultural products is a superior alternative to traditional packagingmaterials such as glass, paper, and metals due to their functionalization, flexibility, and minimal cost. However, usage of thesematerials has been hindered due to their inferiormechanical and barrier behaviors, which are susceptible to improvement through inclusion of functionalized reinforcing macro- or nanofillers. Furthermore, most reinforced materials exhibit inferior matrix-filler interfacial interactions, which are enhanced with reducing filler dimensions. Hence, this review elucidates functionalization of composites interfacial interaction and its relationship to enhancement of the properties of packaging materials, especially antimicrobial tendencies, enzyme immobilization behavior, biosensing affinity, and so on. Thus, a fundamental understanding of interfacial structure and its relationship to the overall improvement of properties are presented. Therefore, nanomaterials, such as cellulose, nanoclay, halloysite nanotubes, carbon allotropes (graphene and carbon nanotubes), silica, and so on, are discussed relative to their surface treatment approaches and effects on composites films properties for effective packaging. Recently, emerging innovations in nanostructured polymeric composite materials and electrical-sensors, their current applications and future outlook as food, agricultural and industrial packaging materials are also herewith elucidated.
机译:聚合物纳米复合材料在工业,食品和农产品中的应用是一种优越的替代传统包装材料,如玻璃,纸和金属,因为它们的功能化,灵活性和最低成本。然而,由于它们的矫直机械和屏障行为,因此通过包括官能化增强宏或纳米填充物来阻碍物质的使用。此外,大多数增强材料表现出较差的基质填充界面相互作用,其随着还原填料尺寸而增强。因此,本综述阐明了复合材料界面相互作用的官能化及其与增强包装材料的性能的关系,特别是抗微生物倾向,酶固定行为,生物传感亲和力等。因此,提出了对界面结构的根本理解及其与整体改进性能的关系。因此,纳米材料,例如纤维素,纳米粘土,霍氏铁矿石,碳异滴(石墨烯和碳纳米管),二氧化硅等,相对于它们的表面处理方法和对复合材料膜性能的影响,讨论用于有效包装的复合材料。最近,在这里,纳米结构聚合物复合材料和电气传感器的新兴创新,其目前的应用和未来的展望作为食物,农业和工业包装材料也在阐明。

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  • 来源
    《Composite interfaces》 |2020年第1期|共72页
  • 作者单位

    Technical and Vocational Ebonyi State University Abakaliki Nigeria;

    Enhanced Polymer Research Group (EnPRO) Department of Polymer Engineering Faculty of Chemical Engineering Universiti Teknologi Malaysia Skudai Malaysia;

    Technical and Vocational Ebonyi State University Abakaliki Nigeria;

    Technical and Vocational Ebonyi State University Abakaliki Nigeria;

    Technical and Vocational Ebonyi State University Abakaliki Nigeria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 复合材料;
  • 关键词

    Polymer nanocomposites; interfacial interactions; nano-sensors; biosensors;

    机译:聚合物纳米复合材料;界面相互作用;纳米传感器;生物传感器;

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