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Additive Manufactured Graphene Coating with Synergistic Photothermal and Superhydrophobic Effects for Bactericidal Applications

机译:添加剂制造石墨烯涂层,具有协同光热和超疏水效果的杀菌应用

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Drug‐resistant bacterial infection is a global threat to public health due to the high mobility of the population. Novel therapy methods have been intensively studied for the eradication of antibiotic‐resistant bacteria, including photothermal treatment, which has established outstanding bacterial killing efficiencies under laser radiation, and superhydrophobic surfaces have exhibited excellent antifouling properties. However, an effective, scalable, and affordable bactericidal coating for eliminating drug‐resistant bacteria is lacking. Herein, a novel graphene coating using one‐step laser‐induced graphene and simultaneous laser‐induced forward transfer is introduced. The graphene coating shows high photothermal conversion and superhydrophobic performance, and these synergistic effects can make the bacteria number decrease with over 99.99% proportions under one sun illumination. The superhydrophobic properties can also reduce 99.87% of bacteria compared to the control sample when the solar energy is not available. This additive and scalable method can quickly coat functional graphene onto various substrates, with bacterial applications in many areas, such as water pipeline robots. A synergistic antibacterial graphene coating is developed for water pipeline robotics and has superhydrophobic and photothermal effects.
机译:由于人口的高流动性,抗药性细菌感染是对公共卫生的全球威胁。在消除抗生素抗性细菌的消除中集中研究了新的治疗方法,包括光热处理,这在激光辐射下已经建立了出色的细菌杀伤效率,并且超疏水性表面表现出优异的防污性能。然而,缺乏用于消除耐药细菌的有效,可扩展和实惠的杀菌涂层。这里,引入了一种使用单步激光诱导的石墨烯和同时激光诱导的前进转移的新型石墨烯涂层。石墨烯涂层显示出高光热转化和超疏水性能,这些协同效应可以使细菌数量减少超过99.99%的比例在一个太阳照明下。当太阳能不可用时,超疏水性能还可以减少与对照样品相比的细菌的99.87%。这种添加剂和可伸缩方法可以将功能性石墨烯快速涂覆到各种基材上,在许多区域中具有细菌应用,例如水管机器人。开发了一种用于水管道机器人的协同抗菌石墨烯涂层,具有超疏水和光热效应。

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