论文著作:
1. X. Liu, Q. Li, L. Zeng, T. Wang, D. H.Dong, H. Wang, Super-high dual-ion conductivity of BaO-doped GDC electrolytes for solid oxide fuel cells, Journal of Materials Chemistry A2025, DOI: 10.1039/D5TA04803F.
2. X. C. Liu, Q. N. Li, L. P. Zeng, X. L. Zhou, D. H.Dong, Z. P.Shao, H. T. Wang, Measurement of the Proton and Oxide‐Ion Conductivities of Dual‐Ion Conductors by Switching the Current Direction. Small Methods2025, 2500166.
3. K. Ung, D. H. Dong, K. Q. He, H. Y. Ma, P. A. Webley, G. P. Simon, H. T. Wang, Gel-casting of mesoporous silica electrolyte membranes loaded with phosphoric acid for protonic electrolyte cells, Journal of Membrane Science2024, 702, 1222789.
4. F.S. Liu, T.P. Wang, J.J. Li, T. Wei, Z.M. Ye, D.H. Dong, B. Chen, Y.H. Ling, Z.P. Shao, Elevated-temperature bio-ethanol-assisted water electrolysis for efficient hydrogen production, Chemical Engineer Journal2022, 434, 8.
5. D.J. Fan, F.S. Liu, J.J. Li, T. Wei, Z.M. Ye, Z. Wang, X. Hu, D.H. Dong, H.T. Wang, Z.P. Shao, A microchannel reactor-integrated ceramic fuel cell with dual-coupling effect for efficient power and syngas co-generation from methane, Applied Catalysis B: Environmental2021, 297, 120443.
6. T.P. Li, T.P. Wang, T. Wei, X. Hu, Z.M. Ye, Z. Wang, D.H. Dong, B. Chen, H.T. Wang, Z. P. Shao, Robust Anode-Supported Cells with Fast Oxygen Release Channels for Efficient and Stable CO2 Electrolysis at Ultrahigh Current Densities, Small2021, 2007211.
7. Yue Lu, Shanbao Zou, Jiajie Li, Chenyu Li, Xundao Liu, Dehua Dong. Fe, B, and N Codoped carbon Nanoribbons Derived from Heteroatom Polymers as High-Performance Oxygen Reduction Reaction Electrocatalysts for Zinc–Air Batteries,Langmuir 2021, 37: 13018–13026.
8. J.J. Wang, D.J. Fan, L.B. Yu, T. Wei, X. Hu, Z.M. Ye, Z. Wang, Y. Wang, C.C. Li, J.F. Yao, D.H. Dong, Efficient conversion of methane into power via microchanneled solid oxide fuel cells, Journal of Power Sources2020, 453 .
9. J.J. Wang, T.P. Wang, L.B. Yu, T. Wei, X. Hu, Z.M. Ye, Z. Wang, C.E. Buckley, J.F. Yao, G.E. Marnellos, D.H. Dong, Catalytic CeO2 washcoat over microchanneled supporting cathodes of solid oxide electrolysis cells for efficient and stable CO2 reduction, Journal of Power Sources, 412 (2019) 344-349.
10. Y.Y. Ma, Y.X. Ma, Z.B. Zhao, X. Hu, Z.M. Ye, J.F. Yao, C.E. Buckley, D.H. Dong, Comparison of fibrous catalysts and monolithic catalysts for catalytic methane partial oxidation, Renewable Energy, 138 (2019) 1010-1017.
11. Y. Huan, S.X. Chen, R. Zeng, T. Wei, D.H. Dong, X. Hu, Y.H. Huang, Intrinsic Effects of Ruddlesden-Popper-Based Bifunctional Catalysts for High-Temperature Oxygen Reduction and Evolution, Advanced Energy Materials, 9 (2019) 1901573.
12. X. Shao, D.H. Dong, G. Parkinson, C.Z. Li, Thin ceramic membrane with dendritic microchanneled sub structure and high oxygen permeation rate, Journal of Membrane Science, 541 (2017) 653-660.
13. D.H. Dong, S.S. Xu, X. Shao, L. Hucker, J. Marin, T. Pham, K. Xie, Z.M. Ye, P. Yang, L.B. Yu, G. Parkinson, C.Z. Li, Hierarchically ordered porous Ni-based cathode-supported solid oxide electrolysis cells for stable CO2 electrolysis without safe gas, Journal of Materials Chemistry A, 5 (2017) 24098-24102.
14. X. Shao, D.H. Dong, G. Parkinson, C.Z. Li, Microstructure control of oxygen permeation membranes with templated microchannels, Journal of Materials Chemistry A, 2 (2014) 410-417.
15. X. Shao, D.H. Dong, G. Parkinson, C.Z. Li, Improvement of oxygen permeation through microchanneled ceramic membranes, Journal of Membrane Science, 454 (2014) 444-450.
16. X. Shao, D.H. Dong, G. Parkinson, C.Z. Li, A microchanneled ceramic membrane for highly efficient oxygen separation, Journal of Materials Chemistry A, 1 (2013) 9641-9644.
17. J.F. Yao, D.H. Dong, D. Li, L. He, G.S. Xu, H.T. Wang, Contra-diffusion synthesis of ZIF-8 films on a polymer substrate, Chemical Communications, 47 (2011) 2559-2561.