<strong>Email: </strong>ttli@fudan.edu.cn</br> <strong>Address: </strong>Room A5033, Chemistry Building, Department of Chemistry, Fudan University 2005 Songhu Road, Yangpu District, Shanghai 200438, China </br>
Research interests
Academic Appointments
Prizes and awards
Biography
Teaching
Key Publications
Molecular-mediated self-assembly of inorganic nanomaterials
Controlled fabrication of long-range ordered superstructures
Ordered superstructures toward energy storage and conversion
Program for High-Level Overseas Talents(2022)
Tenure track Professor, Department of Chemistry, Fudan University, China
Post-doc Research Fellow, National University of Singapore, Singapore
Ph.D., Department of Chemistry, Fudan University, China
S. Wan, Y. Gao, Z. Zhang, F. Wu, Z. Zheng, H. Chen, X. Xi, D. Yang, T. Li*, Z. Nie, A. Dong*. Oriented linear self-assembly of colloidal nanocrystals through regioselective formation of hydrogen-bonded supramolecular bridges. Journal of the American Chemical Society, 2024.
W. Ding, Y. Xia, H. Song, T. Li*, D. Yang*, A. Dong*. Macroscopic superlattice membranes self-assembled from gold nanobipyramids with precisely tunable tip arrangements for SERS. Angewandte Chemie International Edition, 2024, e202401945.
T. Zhang#, T. Li #, M. Gao, W. Lu, W. L. Ong, K. J. H. Lim, L. Yang, S. Kawi*, G. W. Ho*. Ligand mediated assembly of CdS colloids in 3D porous metal–organic framework derived scaffold with multi-sites heterojunctions for efficient CO2 photoreduction. Advanced Energy Materials, 2024, 2400388.
X. Lyu, G. Wu, Z. Zheng, S. Xia, J. Xie, Y. Xia, P. Fan, R. Zhu, Y. Wang*, D. Yang*, T. Li*, A. Dong*. Molecularly confined topochemical transformation of MXene enables monolayer amorphous metal-oxide nanosheets. ACS Nano, 2024, 18, 2219.
X. Huang, X. Lyu, G. Wu, J. Yang, R. Zhu, T. Li*, Y. Wang*, D. Yang*, A. Dong*. Multilayer superlattices of monolayer mesoporous carbon framework-intercalated MXene for efficient capacitive energy storage. Advanced Energy Materials, 2024, 14, 2303417.
X. Huang, J. Huang, J. Yang, D. Yang*, T. Li*, A. Dong*. High-yield exfoliation of large mXene with flake sizes over 10 μm using edge-anchored carbon nanotubes,Advanced Functional Materials, 2023. 2303003.
W. Han, J. Ning, Y. Long, J. Qiu, W. Jiang, Y. Wang, L. A. Shah, D. Yang, A. Dong*, T. Li*. Unlocking the ultrahigh-current-density hydrogen evolution on 2H-MoS2 via simultaneous structural control across seven orders of magnitude, Advanced Energy Materials, 2023, 13, 2300145.
T. Li, X. Xia, G. Wu, Q. Cai, J. Wang, J. Ning, J. Zheng, M. Kuang, Y. Yang, M. P. Ciamarra, R. Ni*, D. Yang*, A. Dong*. Mismatched ligand density enables ordered assembly of mixed-dimensional, cross-species materials. Science Advances, 2022, 8, eabq0969.
S. Wan, X. Xi, H. Zhang, J. Ning, Z. Zheng, Z. Zhang, Y. Long, Y. Deng, P. Fan, D. Yang, T. Li*, A. Dong*. Shape-mediated oriented assembly of concave nanoparticles under cylindrical confinement, ACS Nano, 2022, 16, 21315.
Y. Deng, Y. Cao, Y. Xia, X. Xi, Y. Wang, W. Jiang, D. Yang, A. Dong*, T. Li*. Self-templated synthesis of CoFeP@C cage-in-cage superlattices for enhanced electrocatalytic water splitting. Advanced Energy Materials, 2022. 12, 2202394.
T. Li, K. H. Chan, T. Ding, X. Q. Wang, Y. Cheng, C. Zhang, W. Lu, G. Yilmaz, C. W. Qiu*, G. W. Ho*. Dynamic thermal trapping enables corss-species smart nanoparticle swarms. Science Advances, 2021, 7, eabe3184.
T. Li, B. Wang, J. Ning, W. Li*, G. Guo, D. Han, B. Xue, J. Zou, G. Wu, Y. Yang, A. Dong*, D. Zhao. Self-assembled nanoparticle supertubes as robust platform for revealing long-term, multiscale lithiation evolution. Matter, 2019, 1, 976.
T. Li, B. Xue, B. Wang, G. Guo, D. Han, Y. Yan, A. Dong*. Tubular monolayer superlattices of hollow Mn3O4 nanocrystals and their oxygen reduction activity. Journal of the American Chemical Society, 2017, 139, 12133.
Address: Chemistry Building, Department of Chemistry, Fudan University
2005 Songhu Road, Yangpu District, Shanghai 200438, China Tel: 86-21-31242791
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