论文著作:
1. D.P. Xue, J.N. Zhang* et al, Spin occupancy regulation of the Pt d-orbital for a robust low-Pt catalyst towards oxygen reduction. Nature Communications, 2024, 15, 5990. (IF=14.7)
2. D.P. Xue, J.N. Zhang* et al, Disentangling the activity-stability trade-off of pyrrolic N-coordinated Fe-N4 catalytic sites for long-life oxygen reduction reaction in acidic medium. Advanced Energy Materials, 2024, 2303733. (IF=24.4)
3. D.P. Xue, J.N. Zhang* et al, Monomicelle-directed engineering of strained carbon nanoribbons as an oxygen reduction catalyst. Advanced science, 2023, 2302930. (IF=14.3)
4. D.P. Xue, J.N. Zhang* et al, Altering the spin state of Fe-N-C through ligand field modulation of single-atom sites boosts the oxygen reduction reaction. Nano Energy, 2023, 105, 108020. (IF=16.8)
5. D.P. Xue, J.N. Zhang* et al, Boron-tethering and regulative electronic states around iridium species for hydrogen evolution, Advanced Functional Materials, 2022, 32, 2113191. (IF=18.5)
6. D.P. Xue, J.N. Zhang* et al, Defect engineering on carbon based catalysts for electrocatalytic CO2 reduction. Nano-Micro Letters, 2021, 13, 8437. (IF=31.6, ESI高被引)
7. B. Zhao, D.P Xue, J.N. Zhang* et al, Optimizing electrocatalytic oxygen reduction by adjacent C-O-C structure-driven charge separation on FeN4 active sites. Applied Catalysis B: Environmental, 2023, 324, 122251. (共同一作,IF=20.2)
8. X.Y. Zhang, D.P. Xue, J,N Zhang* et al, Rational confinement engineering of MOF-derived carbon-based electrocatalysts toward CO2 reduction and O2 reduction reactions, InfoMat, 2021, 4, e12257. (共同一作,IF=22.7)