Photo-responsive chitosan/Ag/MoS2 for rapid bacteria-killing

[Display omitted] •Light responsive CS/Ag/MoS2 coating was prepared on Ti plates for the first time.•Ag NPs enhance the photocatalytic activity of MoS2.•CS/Ag/MoS2-Ti exhibited good photodynamic and photothermal under 660 nm light.•CS/Ag/MoS2-Ti has high antibacterial efficiency within 20 min under...

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Veröffentlicht in:Journal of hazardous materials 2020-02, Vol.383, p.121122-121122, Article 121122
Hauptverfasser: Zhu, Min, Liu, Xiangmei, Tan, Lei, Cui, Zhenduo, Liang, Yanqin, Li, Zhaoyang, Kwok Yeung, Kelvin Wai, Wu, Shuilin
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Sprache:eng
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Zusammenfassung:[Display omitted] •Light responsive CS/Ag/MoS2 coating was prepared on Ti plates for the first time.•Ag NPs enhance the photocatalytic activity of MoS2.•CS/Ag/MoS2-Ti exhibited good photodynamic and photothermal under 660 nm light.•CS/Ag/MoS2-Ti has high antibacterial efficiency within 20 min under 660 nm light.•5 CS/Ag/MoS2-Ti has good biocompatibility. Bacterial infection is a serious problem threatening human health. The chitosan (CS)-modified MoS2 coating loaded with silver nanoparticles (Ag NPs) was designed on the surface of titanium (Ti) to kill bacteria rapidly and efficiently under 660 nm visible light. Ag/MoS2 exhibited high photocatalytic activity due to the rapid transfer of photo-inspired electrons from MoS2 to Ag NPs, resulting in higher yields of radical oxygen species (ROS) to kill bacteria. The covering of CS made the composite coating positively charged to further enhance the antibacterial property of the coating. In addition, CS/Ag/MoS2-Ti also showed a certain photothermal effect. in vitro results showed that the antibacterial efficiency of the coating on Staphylococcus aureus and Escherichia coli was 98.66% and 99.77% respectively, when the coating was irradiated by 660 nm visible light for 20 min. Cell culture tests showed that CS/Ag/MoS2-Ti had no adverse effects on cell growth. Hence, this surface system will be a very promising strategy for eliminating bacterial infection on biomedical device and implants safely and effectively within a short time.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2019.121122