光动力疗法
光化学
激进的
接受者
电子受体
化学
氧气
材料科学
光诱导电子转移
光敏剂
电子
纳米技术
光电子学
电子转移
有机化学
物理
量子力学
凝聚态物理
作者
Xianming Zhang,Lingyun Li,Bingzhe Wang,Zhipeng Cai,Bohan Zhang,Feng Chen,Guichuan Xing,Kai Li,Songnan Qu
标识
DOI:10.1002/anie.202410522
摘要
Carbon dots (CDs) have gained significant interest because of their potential in biomedical applications. Nevertheless, developing CDs with efficient photoinduced charge separation for tumor photodynamic therapy (PDT) remains a challenge. This study presents a novel class of supra‐carbon‐dots (supra‐CDs) developed by fusing red emissive CDs with 2,3‐dicyanohydroquinone (DCHQ) via post‐solvothermal treatment. In supra‐CDs, the core, acting as electron donors, is formed by assembled CDs with substantial sp2 domains, the fused interface originating from DCHQ with electron‐withdrawing groups functions as the electron acceptor. This configuration creates the unique donor‐acceptor nanostructure. Upon white light irradiation, the excited electrons from the assembled CDs were transferred to the electron‐withdrawing interface, whereas the photogenerated holes were retained within the assembled CDs as radicals, leading to effective photoinduced charge separation. The separated photogenerated electrons then react with oxygen to generate superoxide radicals. Simultaneously, the photogenerated holes undergo oxidation of crucial cellular substrates. This dual action underscores the exceptional cell‐killing efficacy of supra‐CDs. Moreover, the increased particle sizes (~20 nm) ensure supra‐CDs to exhibit a notable capacity for tumor accumulation via the improved permeability and retention effect, thereby achieving satisfactory anti‐tumor PDT efficacy in a mouse subcutaneous tumor model.
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