光催化
材料科学
氢
纳米技术
制氢
带隙
光化学
光电子学
化学
催化作用
有机化学
作者
Xin Lu,Xinlei Yu,Bo Li,Xianshun Sun,Longjiu Cheng,Yuan-Zhong Kai,Hongping Zhou,Yupeng Tian,Dandan Li
标识
DOI:10.1002/advs.202405643
摘要
Abstract The construction of near‐infrared (NIR) light‐activated hydrogen‐producing materials that enable the controlled generation and high‐concentration release of hydrogen molecules in deep tumor tissues and enhance the effects of hydrogen therapy holds significant scientific importance. To address the key technical challenge of low‐efficiency oxidation–reduction reactions for narrow‐bandgap photocatalytic materials, this work proposes an innovative approach for the controllable fabrication of multiphoton photocatalytic materials to overcome the limitations imposed by traditional near‐infrared photocatalysts with “narrow‐bandgap” constraints. Herein, an NIR‐responsive multiphoton photocatalyst, ZrTc‐Co , is developed by utilizing a post‐synthetic coordination modification strategy to introduce hydrogenation active site Co II into a multiphoton responsive MOF ( ZrTc ). The results reveal that with the introduction of the Co II site, electron–hole recombination can be efficiently suppressed, thus promoting the efficiency of hydrogen evolution reaction. In addition, the integration of Co II can effectively enhance charge transfer and improve static hyperpolarizability, which endows ZrTc‐Co with excellent multiphoton absorption. Moreover, hyaluronic acid modification endows ZrTc‐Co with cancer cell‐specific targeting characteristics, laying the foundation for tumor‐specific elimination. Collectively, the proposed findings present a strategy for constructing NIR‐II light‐mediated hydrogen therapeutic agents for deep tumor elimination.
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