论文著作:
1) Li, J.; Liu, C.-S.*; Song, J*; Bert Meijer*, et al. Self-Regulating Hydrogel with Reversible Supramolecular Chirality Inversion in its Gel-to-Gel Transformation. J. Am. Chem. Soc. 2025, 147, 17361–17371 (IF = 15.6, Citation = 2).
2) Li, J.; Cui, Y.; Lu, Y.-L.; Zhang, Y.; Zhang, K.; Gu, C.; Wang, K.; Liang, Y.; Liu, C.-S.*, Programmable Supramolecular Chirality in Non-equilibrium Systems Affording a Multistate Chiroptical Switch. Nat. Commun. 2023, 14, 5030. (IF = 14.7, Citation = 19)
3) Gu, C.; Wang, M.; Zhang, K.; Li, J.*; Lu, Y.-L.; Cui, Y.; Zhang, Y.; Liu, C.-S.*, A Full-Device Autonomous Self-Healing Stretchable Soft Battery from Self-Bonded Eutectogels. Adv. Mater. 2023, 35, 2208392. (IF = 27.4, Citation = 60)
4) Gu, C.; Xie, X.-Q.; Liang, Y.; Li, J.*; Wang, H.; Wang, K.; Liu, J.; Wang, M.; Zhang, Y.; Li, M.; Kong, H.; Liu, C.-S.*, Small Molecule-based Supramolecular-Polymer Double-Network Hydrogel Electrolytes for Ultra-Stretchable and Waterproof Zn–air Batteries Working from –50 to 100 °C. Energy Environ. Sci. 2021, 14, 4451–4462. (IF = 32.4, Citation = 132, Highly Cited Paper)
5) Xie, X.-Q.; Zhang, Y.; Wang, M.; Liang, Y.; Cui, Y.; Li, J.*; Liu, C.-S., Programmable Transient Supramolecular Chiral G-quadruplex Hydrogels via a Chemically Fueled Non-Equilibrium Self-assembly Strategy. Angew. Chem. Int. Ed. 2022, 61, e202114471. (IF = 16.1, Citation = 40)
6) Gu, C.; Peng, Y.; Li, J.*; Wang, H.; Xie, X.-Q.; Cao, X.; Liu, C.-S.*, Supramolecular G4 Eutectogels with High Ionic Conductivity and Solvent-induced Chiral Inversion. Angew. Chem. Int. Ed. 2020, 59, 18768–18773. (IF = 16.1, Citation = 107)
7) Liu, C.-S.*; Li, J.*; Pang, H.*, Metal-Organic Framework-Based Materials as an Emerging Platform for Advanced Electrochemical Sensing. Coord. Chem. Rev. 2020, 410, 213222. (IF = 20.3, Citation = 436, 0.1% Hot Paper)
8) Liang, Y.; Wang, K.; Li, J.*; Wang, H.; Xie, X.-Q.; Cui, Y.; Zhang, Y.; Wang, M.; Liu, C.-S.*, Low-Molecular-Weight Supramolecular-Polymer Double-Network Eutectogels for Self-Adhesive and Bidirectional Sensors. Adv. Funct. Mater. 2021, 31, 2104963. (IF = 18.5, Citation = 139)
9) Gu, C.; Li, J.*; Liu, J.-P.; Wang, H.; Peng, Y.; Liu, C.-S.*, Conferring Supramolecular Guanosine Gel Nanofiber with ZIF-67 for High-Performance Oxygen Reduction Catalysis in Rechargeable Zinc–Air Batteries. Appl. Catal. B-Environ. 2021, 286, 119888. (IF = 20.2, Citation = 70)
10)Liu, J.; Wang, M.; Gu, C.; Li, J.*; Liang, Y.; Wang, H.; Cui, Y.; Liu, C.-S.*, Supramolecular Gel-Derived Highly Efficient Bifunctional Catalysts for Omnidirectionally Stretchable Zn–Air Batteries with Extreme Environmental Adaptability. Adv. Sci. 2022, 9, 2200753. (IF = 14.3,