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双层SiO包覆的水稳定卤化物钙钛矿作为一种有前景的可见光下抗菌光催化剂

Double Layer SiO-Coated Water-Stable Halide Perovskite as a Promising Antimicrobial Photocatalyst under Visible Light.

作者信息

Zhu Yifan, Shen Hongchen, Ai Qing, Feng Yuren, Shin Bongki, Gonzales Mateo, Yan Yunrui, He Ze, Huang Xiaochuan, Zhang Xiang, Han Yimo, Ajayan Pulickel M, Li Qilin, Lou Jun

机构信息

Department of Materials Science and Nanoengineering, Rice University, Houston, Texas 77005, United States.

Department of Civil and Environmental Engineering, Rice University, MS 519, 6100 Main Street, Houston, Texas 77005, United States.

出版信息

Nano Lett. 2024 Oct 30;24(43):13718-13726. doi: 10.1021/acs.nanolett.4c03793. Epub 2024 Oct 15.

Abstract

Halide perovskite nanocrystals (HPNCs) have emerged as promising materials for various light harvesting applications due to their exceptional optical and electronic properties. However, their inherent instability in water and biological fluids has limited their use as photocatalysts in the aqueous phase. In this study, we present highly water-stable SiO-coated HPNCs as efficient photocatalysts for antimicrobial applications. The double SiO layer coating method confers long-term structural and optical stability to HPNCs in water, while the in situ synthesis of lead- and bismuth-based perovskite NCs into the SiO shell enhances their versatility and tunability. We demonstrate that the substantial generation of singlet oxygen via energy transfer from HPNCs enables efficient photoinduced antibacterial efficacy under aqueous conditions. More than 90% of was inactivated under mild visible light irradiation for 6 h. The excellent photocatalytic antibacterial performance suggests that SiO-coated HPNCs hold great potential for various aqueous phase photocatalytic applications.

摘要

卤化物钙钛矿纳米晶体(HPNCs)因其优异的光学和电子特性,已成为各种光捕获应用中颇具前景的材料。然而,它们在水和生物流体中固有的不稳定性限制了其在水相作为光催化剂的应用。在本研究中,我们展示了高度水稳定的SiO包覆的HPNCs作为抗菌应用的高效光催化剂。双层SiO包覆方法赋予了HPNCs在水中长期的结构和光学稳定性,而将铅基和铋基钙钛矿纳米晶体原位合成到SiO壳层中增强了它们的多功能性和可调性。我们证明,通过从HPNCs进行能量转移大量产生单线态氧,能够在水相条件下实现高效的光致抗菌效果。在温和的可见光照射6小时后,超过90%的[具体细菌未提及]被灭活。优异的光催化抗菌性能表明,SiO包覆的HPNCs在各种水相光催化应用中具有巨大潜力。

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