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Recent developments for antimicrobial applications of graphene-based polymeric composites: A review
Journal of Industrial and Engineering Chemistry ( IF 6.1 ) Pub Date : 2021-05-01 , DOI: 10.1016/j.jiec.2021.04.050
Nabira Fatima , Umair Yaqub Qazi , Asim Mansha , Ijaz Ahmad Bhatti , Rahat Javaid , Qamar Abbas , Nimra Nadeem , Zulfiqar Ahmad Rehan , Saima Noreen , Muhammad Zahid

Owing to its captivating properties, Graphene-based materials (GMBs) have appeared as a broad-spectrum antimicrobial material and attracting scientists and researchers’ attention. By focusing on the recent advances in the polymeric nanocomposite’s field, current study is positioned on the graphene-based polymeric composites having antibiofilm and antimicrobial activities to confront the current situations of microbial resistance against antibiotics and other drugs. Furthermore, this review summarizes the influence of different factors on the antimicrobial activities of graphene-based polymeric composites like size, shape, number of layers, concentration, dispersibility, and functionalization, and also shed the light on the possible mode of actions of these materials. Graphene-based polymeric composites exert its antimicrobial action by physical damages (e.g., direct sharp edges’ contact to cell membranes of bacteria, wrapping of the bacterial cell, phospholipid extraction, and photo-thermal ablation) and chemical damages (e.g. oxidative-stress and charge transfer). Besides, this review article thoroughly describes the antimicrobial applications of graphene-based polymeric composites, which are because of their good biocompatibility and superior antimicrobial properties such as wound bandages and dressings, antimicrobial coatings, drug delivery, food packaging, hydrogel formation, and water disinfection. Present review may stimulate major concerns, spur further developments, and provide valuable insight into the promising fields.



中文翻译:

石墨烯基聚合物复合材料抗菌应用的最新进展:综述

由于其迷人的特性,石墨烯基材料 (GMB) 已作为一种广谱抗菌材料出现,并引起了科学家和研究人员的关注。通过关注聚合物纳米复合材料领域的最新进展,当前的研究定位于具有抗生物膜和抗菌活性的石墨烯基聚合物复合材料,以应对微生物对抗生素和其他药物的耐药性的现状。此外,本综述总结了不同因素对石墨烯基聚合物复合材料抗菌活性的影响,如尺寸、形状、层数、浓度、分散性和功能化,并阐明了这些材料可能的作用模式。 . 石墨烯基聚合物复合材料通过物理损伤(例如,尖锐边缘直接接触细菌细胞膜、包裹细菌细胞、磷脂提取和光热消融)和化学损伤(例如氧化应激和电荷转移)。此外,这篇综述文章全面描述了石墨烯基聚合物复合材料的抗菌应用,因为它们具有良好的生物相容性和卓越的抗菌性能,如伤口绷带和敷料、抗菌涂层、药物输送、食品包装、水凝胶形成和水消毒. 目前的审查可能会引起主要关注,刺激进一步的发展,并为有前途的领域提供宝贵的见解。包裹细菌细胞、磷脂提取和光热消融)和化学损伤(例如氧化应激和电荷转移)。此外,这篇综述文章全面描述了石墨烯基聚合物复合材料的抗菌应用,因为它们具有良好的生物相容性和卓越的抗菌性能,如伤口绷带和敷料、抗菌涂层、药物输送、食品包装、水凝胶形成和水消毒. 目前的审查可能会引起主要关注,刺激进一步的发展,并为有前途的领域提供宝贵的见解。包裹细菌细胞、磷脂提取和光热消融)和化学损伤(例如氧化应激和电荷转移)。此外,这篇综述文章全面描述了石墨烯基聚合物复合材料的抗菌应用,因为它们具有良好的生物相容性和卓越的抗菌性能,如伤口绷带和敷料、抗菌涂层、药物输送、食品包装、水凝胶形成和水消毒. 目前的审查可能会引起主要关注,刺激进一步的发展,并为有前途的领域提供宝贵的见解。这篇综述文章彻底描述了石墨烯基聚合物复合材料的抗菌应用,这是因为它们具有良好的生物相容性和卓越的抗菌性能,例如伤口绷带和敷料、抗菌涂层、药物输送、食品包装、水凝胶形成和水消毒。目前的审查可能会引起主要关注,刺激进一步的发展,并为有前途的领域提供宝贵的见解。这篇综述文章彻底描述了石墨烯基聚合物复合材料的抗菌应用,这是因为它们具有良好的生物相容性和卓越的抗菌性能,例如伤口绷带和敷料、抗菌涂层、药物输送、食品包装、水凝胶形成和水消毒。目前的审查可能会引起主要关注,刺激进一步的发展,并为有前途的领域提供宝贵的见解。

更新日期:2021-06-23
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