Recent Advancements on Photothermal Conversion and Antibacterial Applications over MXenes-Based Materials.

Recent Advancements on Photothermal Conversion and Antibacterial Applications over MXenes-Based Materials.
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MXenes 基材料光热转换和抗菌应用的最新进展

DOI:
10.1007/s40820-022-00901-w
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发表时间:
2022-08-24
期刊:
影响因子:
26.6
通讯作者:
Wang, Fenglong
Wang, Fenglong
中科院分区:
材料科学1区
文献类型:
--
作者:
Hao, Shuyan;Han, Hecheng;Yang, Zhengyi;Chen, Mengting;Jiang, Yanyan;Lu, Guixia;Dong, Lun;Wen, Hongling;Li, Hui;Liu, Jiurong;Wu, Lili;Wang, Zhou;Wang, Fenglong

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系统地描述了MXenes的制备、表征和光热性能。总结和综述了MXenes基材料的光热衍生抗菌性能和机理。研究了基于MXenes基材料抗菌性能的衍生应用的最新进展,包括体外和体内灭菌、太阳能水蒸发和净化、柔性抗菌织物。摘要有害细菌的增殖和超耐药细菌的出现已经对MXenes基材料的抗菌性能提出了挑战。对公共健康构成巨大威胁,这促使研究人员开发无抗生素策略来根除这些凶猛的微生物。尽管已经取得了巨大的成就,但实现高效灭菌以切断耐药性的产生仍然是一项艰巨的挑战。最近,光热疗法(PTT)已成为一种有前景的解决方案,可通过超出病原菌耐受性的高温来有效破坏病原菌的完整性。到目前为止,人们已经研究了多种光热剂用于抗菌 PTT。其中,MXenes(一种二维过渡金属碳化物或氮化物)因其高长径比、原子薄的厚度、优异的光热性能、低细胞毒性和在水体系中的超高分散性而被广泛研究,成为最有前途的候选材料之一。此外,通过基于 MXenes 的材料的精心设计,可以定制利用其抗菌特性的巨大应用场景。在这篇综述中,首先系统地介绍了 MXene 的合成方法和结构特性,然后记录了基于 MXene 的材料的光热特性和灭菌机制。随后,对利用MXenes基材料的光热和抗菌性能在不同领域的最新进展进行了很好的总结,揭示了这些材料在各种用途上的潜在应用,包括体外和体内灭菌、太阳能水蒸发和净化以及柔性抗菌织物。最后但并非最不重要的一点是,讨论了当前的挑战和未来的前景,为使用 MXene 制造高效抗菌系统提供理论指导。
HighlightsFabrication, characterizations and photothermal properties of MXenes are systematically described.Photothermal-derived antibacterial performances and mechanisms of MXenes-based materials are summarized and reviewed.Recent advances in the derivative applications relying on antibacterial properties of MXenes-based materials, including in vitro and in vivo sterilization, solar water evaporation and purification, and flexible antibacterial fabrics, are investigated.AbstractThe pernicious bacterial proliferation and emergence of super-resistant bacteria have already posed a great threat to public health, which drives researchers to develop antibiotic-free strategies to eradicate these fierce microbes. Although enormous achievements have already been achieved, it remains an arduous challenge to realize efficient sterilization to cut off the drug resistance generation. Recently, photothermal therapy (PTT) has emerged as a promising solution to efficiently damage the integrity of pathogenic bacteria based on hyperthermia beyond their tolerance. Until now, numerous photothermal agents have been studied for antimicrobial PTT. Among them, MXenes (a type of two-dimensional transition metal carbides or nitrides) are extensively investigated as one of the most promising candidates due to their high aspect ratio, atomic-thin thickness, excellent photothermal performance, low cytotoxicity, and ultrahigh dispersibility in aqueous systems. Besides, the enormous application scenarios using their antibacterial properties can be tailored via elaborated designs of MXenes-based materials. In this review, the synthetic approaches and textural properties of MXenes have been systematically presented first, and then the photothermal properties and sterilization mechanisms using MXenes-based materials are documented. Subsequently, recent progress in diverse fields making use of the photothermal and antibacterial performances of MXenes-based materials are well summarized to reveal the potential applications of these materials for various purposes, including in vitro and in vivo sterilization, solar water evaporation and purification, and flexible antibacterial fabrics. Last but not least, the current challenges and future perspectives are discussed to provide theoretical guidance for the fabrication of efficient antimicrobial systems using MXenes.
DOI: 10.1021/acsanm.1c02783
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影响因子: 5.9
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