Follow
Maosheng Li
Title
Cited by
Cited by
Year
Synergetic organocatalysis for eliminating epimerization in ring-opening polymerizations enables synthesis of stereoregular isotactic polyester
M Li, Y Tao, J Tang, Y Wang, X Zhang, Y Tao, X Wang
Journal of the American Chemical Society 141 (1), 281-289, 2018
1192018
O‐to‐S Substitution Enables Dovetailing Conflicting Cyclizability, Polymerizability, and Recyclability: Dithiolactone vs. Dilactone
Y Wang, M Li, J Chen, Y Tao, X Wang
Angewandte Chemie International Edition 60 (41), 22547-22553, 2021
922021
S‐Carboxyanhydrides: Ultrafast and Selective Ring‐Opening Polymerizations Towards Well‐defined Functionalized Polythioesters
Y Wang, M Li, S Wang, Y Tao, X Wang
Angewandte Chemie International Edition 60 (19), 10798-10805, 2021
382021
Unimolecular Anion‐Binding Catalysts for Selective Ring‐opening Polymerization of O‐carboxyanhydrides
M Li, S Zhang, X Zhang, Y Wang, J Chen, Y Tao, X Wang
Angewandte Chemie International Edition 60 (11), 6003-6012, 2021
362021
Switchable polymerization organocatalysis: from monomer mixtures to block copolymers
J Tang, M Li, X Wang, Y Tao
Angewandte Chemie 134 (15), e202115465, 2022
292022
Facile organocatalyzed synthesis of poly (ε-lysine) under mild conditions
J Chen, M Li, W He, Y Tao, X Wang
Macromolecules 50 (23), 9128-9134, 2017
292017
Anion-binding catalysis enables living cationic polymerization
M Li, Z Zhang, Y Yan, W Lv, Z Li, X Wang, Y Tao
Nature Synthesis 1 (10), 815-823, 2022
252022
Iterative Synthesis of Stereo‐ and Sequence‐Defined Polymers via Acid‐Orthogonal Deprotection Chemistry
W He, S Wang, M Li, X Wang, Y Tao
Angewandte Chemie 134 (9), e202112439, 2022
252022
Crystalline regio-/stereoregular glycine-bearing polymers from ROMP: Effect of microstructures on materials performances
M Li, F Cui, Y Li, Y Tao, X Wang
Macromolecules 49 (24), 9415-9424, 2016
222016
Performance‐Advantaged Stereoregular Recyclable Plastics Enabled by Aluminum‐Catalytic Ring‐Opening Polymerization of Dithiolactone
Y Zhu, M Li, Y Wang, X Wang, Y Tao
Angewandte Chemie 135 (24), e202302898, 2023
202023
Precision Synthesis of Polypeptides via Living Anionic Ring-Opening Polymerization of N-Carboxyanhydrides by Tri-thiourea Catalysts
W Lv, Y Wang, M Li, X Wang, Y Tao
Journal of the American Chemical Society 144 (51), 23622-23632, 2022
192022
Precision synthesis of sustainable thermoplastic elastomers from lysine‐derived monomers
S Liu, X Zhang, M Li, X Ren, Y Tao
Journal of Polymer Science Part A: Polymer Chemistry 55 (2), 349-355, 2017
192017
Tug‐of‐War between Two Distinct Catalytic Sites Enables Fast and Selective Ring‐Opening Copolymerizations
J Wang, Y Zhu, M Li, Y Wang, X Wang, Y Tao
Angewandte Chemie 134 (36), e202208525, 2022
162022
Organocatalytic polymerization of morpholine-2, 5-diones toward methionine-containing poly (ester amide) s: preparation and facile functionalization
J Lian, M Li, S Wang, Y Tao, X Wang
Macromolecules 53 (24), 10830-10836, 2020
162020
Poly (ε-lysine) and its derivatives via ring-opening polymerization of biorenewable cyclic lysine
M Li, Y Tao
Polymer Chemistry 12 (10), 1415-1424, 2021
112021
Mechanistic insight into anion‐binding catalytic living cationic polymerization
M Li, H Li, X Zhang, X Wang, Y Tao
Angewandte Chemie International Edition, e202303237, 2023
72023
Triple hydrogen‐bonding block copolymers via RAFT polymerization: Synthesis, vesicle formation, and molecule‐recognition behavior
S Wang, M Li, H Zhang, X Yang, X Zhang, Y Tao, X Wang
Journal of Polymer Science Part A: Polymer Chemistry 54 (11), 1633-1638, 2016
52016
Oxygen‐Tolerant Near‐Infrared Organic Long‐Persistent Luminescent Copolymers
Z Lin, M Li, R Yoshioka, R Oyama, R Kabe
Angewandte Chemie International Edition 63 (7), e202314500, 2024
22024
Scale‐up Efficient Synthesis of α‐Poly(L‐lysine)
W Lv, M Li, Y Tao
Chinese Journal of Chemistry 41 (19), 2488-2492, 2023
22023
Bridged Bicyclic Lactam Enables Chemically Recyclable Nylon
W Lv, M Li, Y Tao
Angewandte Chemie International Edition 63 (19), e202402541, 2024
2024
The system can't perform the operation now. Try again later.
Articles 1–20