Type I Photosensitization with Strong Hydroxyl Radical Generation in NIR Dye Boosted by Vigorous Intramolecular Motions for Synergistic Therapy

Author:

Lin Runfeng1,Liu Junkai2,Xu Weilin3,Liu Zicheng1,He Xiang1,Zheng Canze1,Kang Miaomiao3,Li Xue3,Zhang Zhijun3,Feng Hai‐Tao4,Lam Jacky W. Y.2,Wang Dong3,Chen Ming1,Tang Ben Zhong235ORCID

Affiliation:

1. College of Chemistry and Materials Science Jinan University Guangzhou 510632 China

2. Department of Chemistry Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction Guangdong‐Hong Kong‐Macau Joint Laboratory of Optoelectronic and Magnetic Materials The Hong Kong University of Science and Technology Clear Water Bay, Kowloon Hong Kong 999077 China

3. Center for AIE Research College of Materials Science and Engineering Shenzhen University Shenzhen 518060 China

4. AIE Research Center Shaanxi Key Laboratory of Photochemistry College of Chemistry and Chemical Engineering Baoji University of Arts and Sciences Baoji 721013 China

5. School of Science and Engineering Shenzhen Key Laboratory of Functional Aggregate Materials The Chinese University of Hong Kong Shenzhen 518172 China

Abstract

AbstractDevelopment of type I photosensitizers (PSs) with strong hydroxyl radical (·OH) formation is particularly important in the anaerobic tumor treatment. On the other hand, it is challenging to obtain an efficient solid‐state intramolecular motion to promote the development of molecular machine and molecular motor. However, the relationship between them is never revealed. In this work, a pyrazine‐based near‐infrared type I PS with remarkable donor–acceptor effect is developed. Notably, the intramolecular motions are almost maximized by the combination of intramolecular and intermolecular engineering to simultaneously introduce the unlimited bond stretching vibration and boost the group rotation. The photothermal conversion caused by the intramolecular motions is realized with efficiency as high as 86.8%. The D–A conformation of PS can also induce a very small singlet‐triplet splitting of 0.07 eV, which is crucial to promote the intersystem crossing for the triplet sensitization. Interestingly, its photosensitization is closely related to the intramolecular motions, and a vigorous motion may give rise to a strong ·OH generation. In view of its excellent photosensitization and photothermal behavior, the biocompatible PS exhibits a superior imaging‐guided cancer synergistic therapy. This work stimulates the development of advanced PS for the biomedical application and solid‐state intramolecular motions.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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