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A two-step gas/liquid strategy for the production of N-doped defect-rich transition metal dichalcogenide nanosheets and their antibacterial applications

机译:一个两步气体/液体生产的策略的n型defect-rich过渡金属dichalcogenide nanosheets及其抗菌应用程序

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摘要

Herein, we developed a general two-step gas expansion and exfoliation strategy based on a urea-assisted hydrothermal process combined with sonication exfoliation for the production of nitrogen (N)-doped plus defect-rich transition metal dichalcogenide (TMD) nanosheets (NSs) such as N-MoS2 and N-WS2 NSs. The interlayers of bulk MoS2 (or WS2) were expanded with urea molecules dissolved in distilled water, which were decomposed to NH3 during the hydrothermal process. Simultaneously, sulfur atoms were partly replaced by N atoms to achieve N doping. Subsequently, sonication exfoliation of the urea-treated bulk MoS2 (or WS2) promoted the production of defect-rich NSs. Importantly, the defect-rich N-MoS2 and N-WS2 NSs exhibit enhanced peroxidase-like catalytic activity after being captured by bacteria, and can catalyze hydrogen peroxide (H2O2) to produce more toxic hydroxyl radicals (& x2d9;OH) than non-N-doped MoS2 or WS2 NSs. As a result, the N-MoS2 or N-WS2 NSs were capable of effectively killing Gram-negative ampicillin resistant Escherichia coli (Amp(R)E. coli) and Gram-positive endospore-forming Bacillus subtilis (B. subtilis) and promoting bacteria-infected wound healing. This work not only provides a simple, universal exfoliation strategy for producing defect-rich N-doped TMD NSs but also provides a promising catalytic antibacterial option and has potential for many other catalytic applications.
机译:在此,我们开发了一个通用气体两步基于扩张和剥离战略结合urea-assisted热液过程声波降解法生产剥落氮(N)再版+ defect-rich过渡金属dichalcogenide (TMD) nanosheets (NSs)等N-MoS2和N-WS2 NSs。建设监理(或WS2)和尿素分子扩大溶解在蒸馏水,分解在热液氨的过程。取而代之的是N原子实现N掺杂。随后,声波降解法剥离的urea-treated批量二硫化钼(或WS2)促进了defect-rich NSs生产。defect-rich N-MoS2和N-WS2 NSs展览增强peroxidase-like后催化活性被细菌,可以催化氢过氧化氢(H2O2)产生更多的有毒的羟基激进分子(& x2d9;哦)二硫化钨比non-N-doped二硫化钼或NSs。能有效地杀死革兰氏阴性氨苄青霉素耐药大肠杆菌(Amp (R) E。杆菌)和革兰氏阳性endospore-forming枯草芽孢杆菌(枯草芽孢杆菌)和促进bacteria-infected伤口愈合。只提供了一个简单的,通用的去角质生产战略defect-rich n型TMDNSs还提供了一个有前途的催化抗菌的选择和有潜力其他催化应用程序。

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