材料科学
光热治疗
杰纳斯
纳米技术
聚合物囊泡
单线态氧
纳米颗粒
合理设计
卟啉
异质结
纳米结构
聚合物
光电子学
光化学
共聚物
化学
有机化学
两亲性
复合材料
氧气
作者
Chuanshuang Chen,Guangyu Chu,Wanting He,Yannan Liu,Kai Dai,Jesús Valdez,Audrey Moores,Pei Huang,Zhaohong Wang,Jiale Jin,Ming Guan,Wenfeng Jiang,Yiyong Mai,Dongling Ma,Yue Wang,Yongfeng Zhou
标识
DOI:10.1002/adma.202207950
摘要
Polymer-inorganic hybrid Janus nanoparticles (PI-JNPs) have attracted extensive attention due to their special structures and functions. However, achieving the synergistic enhancement of photochemical activity between polymer and inorganic moieties in PI-JNPs remains challenging. Herein, the construction of a novel Janus Au-porphyrin polymersome (J-AuPPS) heterostructure by a facile one-step photocatalytic synthesis is reported. The near-field enhancement (NFE) effect between porphyrin polymersome (PPS) and Au nanoparticles in J-AuPPS is achieved to enhance its near-infrared (NIR) light absorption and electric/thermal field intensity at their interface, which improves the energy transfer and energetic charge-carrier generation. Therefore, J-AuPPS shows a higher NIR-activated photothermal conversion efficiency (48.4%) and generates more singlet oxygen compared with non-Janus core-particle Au-PPS nanostructure (28.4%). As a result, J-AuPPS exhibits excellent dual-mode (photothermal/photodynamic) antibacterial and anti-biofilm performance, thereby significantly enhancing the in vivo therapeutic effect in an implant-associated-infection rat model. This work is believed to motivate the rational design of advanced hybrid JNPs with desirable NFE effect and further extend their biological applications.
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