电话:
邮箱: songqiao@sz.tsinghua.edu.cn
地址: 信息楼1711
宋桥博士于2025年9月加入清华大学深圳国际研究生院,任助理教授,博士生导师。以通讯或第一作者身份在JACS (1), Angew Chem (3), Adv Mater (1), CCS Chem (2), Chem Rev (1)等学术期刊发表文章20余篇。主持国家、省、市级科技项目6项,包括国自然面上、青年基金等。课题组研究方向为光功能超分子材料。围绕“如何精准制备光功能超分子材料并调控其性质与功能”这一关键科学问题,旨在设计一类新型超分子构筑基元(如自组装环肽等),利用其构建高分子自组装体系,结合超分子光化学,探索其在光捕获体系、光化学转换、近红外荧光材料、室温磷光材料、热活化延迟荧光材料、光敏剂等领域的应用。Art is I, Science is We. 欢迎加入课题组一起探索超分子功能材料的无限可能!
2012年8月-2017年7月,清华大学,化学系,博士
2008年8月-2012年7月,清华大学,化工系,学士
光功能超分子材料
围绕“如何精准制备光功能超分子材料并调控其性质与功能”这一关键科学问题,旨在设计一类新型超分子构筑基元(如自组装环肽等),利用其构建高分子自组装体系,结合超分子光化学,探索其在光捕获体系、光化学转换、近红外荧光材料、室温磷光材料、热活化延迟荧光材料、光敏剂等领域的应用。
目前主要研究方向有:
1. 以自组装环肽为构筑基元的人工光捕获体系
2. 高性能有机荧光材料的超分子构筑策略
3. 水相室温磷光超分子材料
4. 基于空间电荷转移的超分子热活化延迟荧光材料
5. 超分子光敏剂
1. 国家自然科学基金面上项目(项目负责人,22471118,在研,2025.1-2028.12)
2. 深圳市科技创新委员会基础研究面上项目(项目负责人,JCYJ20240813094500002,在研,2024.11-2027.11)
3. 国家自然科学基金青年科学基金(项目负责人,22101124,结题,2022.1-2024.12)
4. 广东省自然科学基金面上项目(项目负责人,2022A1515011394,结题,2022.1-2024.12)
5. 深圳市科技创新委员会基础研究面上项目(项目负责人,JCYJ20210324105009025,结题,2021.11-2024.10)
6. 深圳市高等院校稳定支持计划面上项目(项目负责人,20220815163454004,结题,2022.10-2024.09)
[1] Xianjia Yan, Yuqing Lei, Huiying Guo, Xu Yu, Jiajia Guo*, and Qiao Song*. Kinetically trapped supramolecular fluorophores: Suppressing molecular motion for enhanced brightness and stability in water. CCS Chem. 2025, doi.org/10.31635/ccschem.025.202505887.
[2] Lingfeng Fan, Yong Wu, Cong-Qiao Xu, Hanqiu Jiang, Zhenhua Xie, Yubin Ke, Jun Li, and Qiao Song*. Heavy-atom-free supramolecular photosensitizers derived from conventional fluorophores. Angew. Chem. Int. Ed. 2025, 64, e202508968.
[3] Ruicong Feng, Xianjia Yan, Yufeng Sang, Xindi Liu, Zhi Luo, Zhenhua Xie, Yubin Ke, and Qiao Song*. Transitioning room-temperature phosphorescence from solid states to aqueous phases via a cyclic peptide-based supramolecular scaffold. Angew. Chem. Int. Ed. 2025, 64, e202421729.
[4] Yong Wu, Yuqian Wang, Xu Yu, and Qiao Song*. Comprehensive study of artificial light-harvesting systems with a multi-step sequential energy transfer mechanism. Adv. Sci. 2024, 11, 2404269.
[5] Yuqing Lei, Yuqian Wang, Sophie K. Hill, Zihe Cheng, Qiao Song*, and Sébastien Perrier*. Supra-fluorophores: Ultrabright fluorescent supramolecular assemblies derived from conventional fluorophores in water. Adv. Mater. 2024, 36, 2401346.
[6] Yuqian Wang, Ruicong Feng, Yang Yu, and Qiao Song*. Supramolecular thermally activated delayed fluorescence materials via through-space charge transfer. CCS Chem. 2024, 6, 1165-1173.
[7] Haicheng Lu, Yuqian Wang, Sophie K. Hill, Hanqiu Jiang, Yubin Ke, Shaohui Huang, Dunjin Zheng, Sébastien Perrier, and Qiao Song*. Supra-cyanines: Ultrabright cyanine-based fluorescent supramolecular materials in solution and solid states. Angew. Chem. Int. Ed. 2023, 62, e202311224.
[8] Qiao Song, Zihe Cheng, Maria Kariuki, Stephen C. L. Hall, Sophie K. Hill, Julia Y. Rho, and Sébastien Perrier. Molecular self-assembly and supramolecular chemistry of cyclic peptides. Chem. Rev. 2021, 121, 13936-13995.
[9] Qiao Song, Sofia Goia, Jie Yang, Stephen C. L. Hall, Michael Staniforth, Vasilios G. Stavros, and Sébastien Perrier. Efficient artificial light-harvesting system based on supramolecular peptide nanotubes in water. J. Am. Chem. Soc. 2021, 143, 382-389.
[10] Qiao Song, Andrew Kerr, Jie Yang, Stephen C. L. Hall, and Sébastien Perrier*. Tubular supramolecular alternating copolymers fabricated by cyclic peptide–polymer conjugates. Chem. Sci. 2021, 12, 9096-9103.
· 2022 Polymer Chemistry Emerging Investigators
· 2021 深圳市海外高层次C类人才
· 2017 清华大学优秀博士论文