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Nature-derived fibrous nanomaterial toward biomedicine and environmental remediation: Today's state and future prospects

机译:自然源性纤维纳米材料朝向生物医学和环境修复:今天的状态和未来的前景

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摘要

Nanocellulose (NC) among all renewable biopolymers has proven to be one of the most applicable existing nanomaterials, attributed to its fascinating diverse range of physicochemical properties. Herein, this review presents elaborately updates on current research activities focused on developed materials with NC as bycomponent for application particularly in the field of biomedicine and wastewater remediation. A brief introduction on structural properties, production as well as surface features of NC is elucidated. Next, are highlights on usage of nanocellulosic polymeric materials in biomedicine including drug delivery systems, tissue engineering, wound dressing, medical implants and in addition, applications of NC as adsorbent in the field of environmental remediation are also outlined. This section will mainly focus on the consolidation of NC with other additives to develop flexible substrates via incorporation of new functional moieties. Finally, future perspectives as well as main challenges and impediments on working with nanocellulosic-based materials are explored in an effort to ameliorate the development and effective usage of this nanomaterial in biomedicine and water remediation. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47878.
机译:所有可再生生物聚合物中的纳米纤维素(NC)已被证明是最适用的现有纳米材料之一,归因于其令人着迷的不同的物理化学性质。在此,本综述提出了关于当前研究活动的精心更新,其专注于发达的材料与NC的开发材料,以尤其是应用,特别是在生物医学和废水修复领域。简要介绍了结构性,生产的结构,生产以及NC的表面特征。接下来,在生物医学中的使用包括药物递送系统,组织工程,伤口敷料,医疗植入物,以及另外,还概述了NC作为吸附剂在环境修复领域的应用。本节主要专注于NC与其他添加剂的整合,通过掺入新的功能部分来开发柔性基材。最后,探讨了未来的观点以及与纳米细胞基材料一起使用的主要挑战和障碍,以改善这种纳米材料在生物医学和水处理中的发展和有效性。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47878。

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