量子点
材料科学
磷光
合理设计
碳纤维
石墨烯
纳米材料
光化学
纳米技术
富勒烯
光动力疗法
氧气
光敏剂
化学
荧光
有机化学
复合材料
物理
复合数
量子力学
作者
Jinyi Zhang,Xiaomei Lü,Dandan Tang,Shihong Wu,Xiandeng Hou,Juewen Liu,Peng Wu
标识
DOI:10.1021/acsami.8b15318
摘要
Materials for photosensitized oxygen activation are extremely important for a suite of photodynamic applications in biomedical, analytical, and energy sectors. Carbon-based photosensitizers are attractive for their low cost and high stability, but most of them such as fullerene and graphene quantum dots suffer from low efficiency, and the rational design of carbon-based photosensitizers remains a challenge. Given the similar chemical origin of phosphorescence and photosensitization, we herein synthesized a series of nitrogen-doped carbon dots (C-dots) and confirmed that their photo-oxidation activity correlated with their phosphorescence quantum yields, providing a direction for the rational designing of such materials. Compared to other carbon nanomaterials and molecular photosensitizers, these C-dots have the highest activity, and they can finish oxidation reactions in a few seconds. The excellent photosensitized oxygen activation makes these water-soluble C-dots a promising oxidase-mimicking nanozyme for photodynamic antimicrobial chemotherapy and other applications.
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