生物启发纳米复合材料:可持续绿色技术的功能材料

S. A. Qamar, M. Asgher, N. Khalid
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引用次数: 1

摘要

本章概述了目前生物塑料和生物激发纳米复合材料的进展,这些纳米增强材料正在广泛应用,即生物医学、电子、耐用品和包装材料。由完全和/或部分可再生和可生物降解的材料生产纳米复合材料有助于一系列不同的应用。生物杂化纳米材料可以有效地克服传统材料的亲水性、低热偏转、导电性差和阻隔性等缺点。与纯生物聚合物相比,复合材料中的纳米增强材料具有显著改善的性能,如亲水性降低和机械性能增加,而纯生物聚合物本身无法表现出这些性能。该方法可用于其他天然聚合物,以诱导所需的功能。本章涵盖了纳米功能材料的最新趋势,可再生材料正在应用于纳米生物复合材料的生产及其在生物医学和医疗保健领域的应用,并进行了详细的讨论。这一新兴概念肯定会增强纳米杂化材料在可持续产品开发中的应用范围,比以前应用的合成聚合物基或天然聚合物基材料具有更好的性能。
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Bioinspired Nanocomposites: Functional Materials for Sustainable Greener Technologies
This chapter presents a broad overview of the current advancements in bioplastics and bioinspired nanocomposites with nanoscale reinforcements that are being applied for a broad range of applications, that is, biomedical, electronics, durable goods and packaging materials. The production of nanocomposites by completely and/or partially renewable and biodegradable materials has helped in a range of different applications. Several drawbacks of conventional materials such as hydrophilicity, low-heat deflection, poor conductivity, and barrier properties can be efficiently overcome using biohybrid nanomaterials. Nano-reinforcements in composite materials deliver remarkably improved properties such as decrease in hydrophilicity and increase in mechanical properties as compared with neat biopolymer, which fails to exhibit these properties on its own. This approach can be used for other natural polymers to induce desired functionalities. This chapter covers the recent trends in nano-functional materials, renewable materials that are being applied for the production of nanobiocomposites and their applications especially in biomedical and healthcare sectors, which are discussed in detail. This emerging concept will definitely enhance the scope of nanohybrid materials for sustainable products development with improved properties than previously applied synthetic polymer-based or natural polymer-based materials.
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