论文著作:
1.Ding, Y.; Shen, Y.; Lee, M. H.; Wang, H.; Hu, P.; Huang, M. Insights into the dynamic electron-hole separation process induced by a trapped electron in lead halide perovskites in the presence of solutions. JACS Au 2025, 5, 1738-1745.
2.Ding, Y.#; Du, J.#; Wang, T.; Sun, L. Identifying the active site of water oxidation catalyst based on defective Fe-doped Ni oxyhydroxide. CCS Chem. 2024, 6, 365-376.
3.Ding, Y.; Shen, Y.; Peng, C.; Huang, M.; Hu, P. Unraveling the photogenerated electron localization on the defect-free CH3NH3PbI3(001) surfaces: Understanding and implications from a first-principles study. J. Phys. Chem. Lett. 2020, 11, 8041-8047.
4.Wei, Z.; Ding, Y.*(通讯); Shi, W.; Zhang, F.; Song, Y.; Cui, X.; Guo, Y.; Sun, L.; Jiang, Q.; Zhang, B. Lanthanum-assisted lattice anchoring of iridium in Co3O4 for efficient oxygen evolution reaction in low-iridium water electrolysis. Nat. Commun. 2025, 16, 8145.
5.Cui, X.#; Ding, Y.# (共一); Zhang, F.; Cao, X.; Guo, Y.; Sun, L.; Zhang, B. Reserved charges in long-lived NiOOH phase drive catalytic water oxidation. Nat. Chem. 2026, 18, 120-127.
6.Ding, Y.#; Li, Y.#; Wang, L.; Chai, B.; Jia, Y.; Sun, L.; Fan, K. Reconstruction of Bi2S3 in CO2 electroreduction via topotactic transformation. ACS Appl. Energy Mater. 2024, 7, 5418-5425.
7.Ding, Y.; Xu, Y.; Mao, Y.; Wang, Z.; Hu, P. Achieving rational design of alloy catalysts using a descriptor based on a quantitative structure-energy equation. Chem. Commun. 2020, 56, 3214-3217.
8.Ding, Y.; Xu, Y.; Song, Y.; Guo, C.; Hu, P. Quantitative studies of the coverage effects on microkinetic simulations for NO oxidation on Pt(111). J. Phys. Chem. C 2019, 123, 27594-27602.
9.Zhao, Y.#; Ding, Y.# (共一); Li, W.; Liu, C.; Li, Y.; Zhao, Z.; Shan, Y.; Li, F.; Sun, L.; Li, F. Efficient urea electrosynthesis from carbon dioxide and nitrate via alternating Cu-W bimetallic C-N coupling sites. Nat. Commun. 2023, 14, 4491.
10.Cao, X.#; Ding, G.#; Ding, Y.# (共一); Huo, G.; Wang, L.; Song, Y.; Sun, L. Efficient electrocatalytic hydrogenation of furfural through synergistic catalysis at Mo–O–Cu atomic interface. J. Am. Chem. Soc. 2026, 148, 11154-11165.
11.Sun, S.#; Wu, Y.#; Ding, Y.# (共一); Wang, L.; Cao, X.; Sun, L. Facet-engineered copper electrocatalysts enable sustainable NADH regeneration with high efficiency. J. Am. Chem. Soc. 2025, 147, 16630-16641.
12.Li, W.#; Ding, Y.# (共一); Zhao, Y.#; Li, Z.; Lin, G.; Wang, L.; Sun, L. Zwitterion-modified NiFe OER catalyst achieving ultra-stable anion exchange membrane water electrolysis via dynamic alkaline microenvironment engineering. Angew. Chem. Int. Ed. Engl. 2025, e202505924.
13.Zhang, X.#; Liu, X.#; Ding, Y.# (共一); Ding, B.; Shi, P.; Syzgantseva, O. A.; Syzgantseva, M. A.; Fei, Z.; Chen, J.; Rahim, G.; Han, M.; Zhang, K.; Zhou, Y.; Brooks, K. G.; Wang, R.; Sun, L.; Dyson, P. J.; Dai, S.; Nazeeruddin, M. K. K.; Ding, Y. 3D conjugated hole transporting materials for efficient and stable perovskite solar cells and modules. Adv. Mater. 2024, 36, e2310619.