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Antibacterial activity of chitosan nano-composites and carbon nanotubes: A review

机译:壳聚糖纳米复合材料和碳纳米管的抗菌活性:综述

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Bacteriological contamination of water sources is a major challenge that has a detrimental impact on both the environment and human health. This imposes the search for the most efficient disinfectant. Despite their antibacterial efficiency, traditional methods can often form disinfection byproducts through their reaction with organic and inorganic compounds. Substitutes for conventional bacterial inactivation methods should not produce harmful byproducts and must also be cost effective. Nanotechnology is an attractive option that is suited for surface reactions as nanostructures offer large surface to volume ratios. Technologies using chitosan-modified nanocomposites and carbon nanotubes have proven to offer promising alternatives for bacterial inactivation. To enhance their antibacterial efficiency, such technologies have been modified chemically and physically and have as well been associated with other treatment techniques. However, despite their high bacterial disinfection efficacy and lack of treatment byproducts, the vagueness in bacterial inactivation mechanisms and complexity in materials preparation have often obscured their wide scale application. The aim of this manuscript is to review the recent advances in bacterial disinfection using nanomaterials, in the form of chitosan and carbon nanotubes. The rapid rate of research and the notable progress in this area dictate the frequent compilation and dissemination of recent introductions to this field. Existing gaps in the literature are thus also highlighted and reported discrepancies are pinpointed so that roadmaps for future studies may be figured. (c) 2019 Elsevier B.V. All rights reserved.
机译:水源的细菌污染是对环境和人类健康有害影响的主要挑战。这强加了寻求最有效的消毒剂。尽管它们抗菌效率,但传统方法通常可以通过与有机和无机化合物的反应来形成消毒副产物。常规细菌灭活方法的替代品不应产生有害的副产品,并且也必须具有成本效益。纳米技术是一种有吸引力的选择,适用于表面反应,因为纳米结构提供大表面到体积比。使用壳聚糖改性的纳米复合材料和碳纳米管的技术已被证明提供了有希望的细菌失活的替代品。为了增强它们的抗菌效率,这些技术已经在化学和物理上进行了改性,并且与其他处理技术有关。然而,尽管它们具有高细菌消毒功效和缺乏治疗副产物,但细菌灭活机制和材料制剂中的复杂性的模糊性往往模糊了它们的广泛尺度应用。该稿件的目的是审查使用纳米材料的细菌消毒的最新进展,以壳聚糖和碳纳米管的形式。该区域的快速研究和显着进展决定了最近介绍该领域的频繁编制和传播。因此,文献中存在的现有差距也突出显示并报告了差异被定位,以便可以对未来研究的路线图进行了查明。 (c)2019 Elsevier B.v.保留所有权利。

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