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1. X. Li, C. Liu, X. Elvis Cao,* Y.-F. Xu ,* X. Yao, Matter , 2025, in press
2. C. Liu, S. Tang, Ab. Mohan, A. A. Tountas, R. Song, Y.-F. Xu ,* X. Yao*, G. A. Ozin,* Micro/nanoscale thermometry in photothermal catalysis, Joule , 2025, 102052
3. He, J., Qiang, J., Y. F. Xu ;* Shi, Z., Huang, K.,* Yao, X.* Optimization of electronic structure by defect engineering for electrocatalytic carbon dioxide reduction reaction. Inorg. Chem. Front. 2025, 12, 1743-1772
4. Y. F. Xu , Chen, X., Yao, X.* An unsung hero in electrochemistry. Nat. Catal. 2024, 7, 1259-1260
5. Y. F. Xu ,* A. A. Tountas, R. Song, J. Ye, J. H. Wei, S. Ji, L. Zhao, W. Zhou, J. H. Chen, G. Zhao, X. Yao, M. M. Sain, D. B. Kuang,* G. A. Ozin,* Equilibrium photo-thermodynamics enables a sustainable methanol synthesis, Joule 2023, 7, 738-752.
6. Z. Lu, † Y. F. Xu , † Z. Zhang, † J. Sun, X. Ding, W. Sun, W. Tu, Y. Zhou, Y. Yao, * G. A. Ozin, * L. Wang, * Z. Zou, J. Am. Chem. Soc. 2023, 145, 26052-26060 (†共同一作)
7. D. Lou,† Z. Zhu, † Y. F. Xu ,† C. Li,* K. Feng, D. Zhang, K. Lv, Z. Wu, C. Zhang, G. A. Ozin,* L. He,* X. Zhang, A core-shell catalyst design boosts the performance of photothermal reverse water gas shift catalysis. Sci. China Mater. 2021, 64 (9), 2212-2220. (†共同一作)
8. Y. F. Xu , M. Lee, Y. Jun, G. A. Ozin*. Perovskite the Chameleon CO2 Photocatalyst. Cell Rep. Phys. Sci. , 2020, 100300
9. Y. F. Xu , P. N. Duchesne, L. Wang, A. Tavasoli, A. A. Jelle, M. Xia, J.-F. Liao, D.-B. Kuang,* G. A. Ozin*. High-Performance Light-Driven Heterogeneous CO2 Catalysis with Near-Unity Selectivity on Metal Phosphides, Nat. Commun. , 2020, 11, 5149 (featured in a Nature Communications Editors’ Highlights)
10. Y.-X. Chen, Y. F. Xu ,* X.-D. Wang, H.-Y. Chen, D.-B. Kuang*. Solvent selection and Pt decoration towards enhanced photocatalytic CO2 reduction over CsPbBr3 perovskite single crystal. Sustainable Energy Fuels 2020, 4, 2249-2255.
11. W.-Q. Wu, † Y. F. Xu ,† J.-F. Liao,† L. Wang, D.-B. Kuang*. Branched titania nanostructures for efficient energy conversion and storage: A review on design strategies, structural merits and multifunctionalities. Nano Energy 2019, 62, 791-809. (†共同一作)
12. M.-Z. Yang, † Y. F. Xu ,† J.-F. Liao, X.-D. Wang, H.-Y. Chen, D.-B. Kuang*. Constructing CsPbBrxI3-x nanocrystal/carbon nanotube composites with improved charge transfer and light harvesting for enhanced photoelectrochemical activity. J. Mater. Chem. A 2019, 7, 5409-5415. (†共同一作)
13. Y. F. Xu , X. D. Wang, J. F. Liao, B. X. Chen, H. Y. Chen, D. B. Kuang*. Amorphous-TiO2-Encapsulated CsPbBr3 Nanocrystal Composite Photocatalyst with Enhanced Charge Separation and CO2 Fixation, Adv. Mater. Interfaces 2018, 5, 1801015.
14. Y. F. Xu ,† M.-Z. Yang,† H.-Y. Chen, J.-F. Liao, X.-D. Wang, D.-B. Kuang*. Enhanced Solar-driven Gaseous CO2 Conversion by CsPbBr3 Nanocrystal/Pd Nanosheet Schottky-junction Photocatalyst, ACS Appl. Energy Mater. 2018, 1 (9), 5083-5089 (†共同一作)
15. Y. F. Xu ,† M.-Z. Yang,† B.-X. Chen, X.-D. Wang, H.-Y. Chen, D.-B. Kuang,* C.-Y. Su. A CsPbBr3 Perovskite Quantum Dot/Graphene Oxide Composite for Photocatalytic CO2 Reduction. J. Am. Chem. Soc. 2017, 139 (16), 5660-5663. (†共同一作)(ESI 高被引论文, 英国化学会 Chemistry World 杂志新闻 )
16. Y. F. Xu , X. D. Wang, H. Y. Chen, D. B. Kuang,* C. Y. Su. Toward High Performance Photoelectrochemical Water Oxidation: Combined Effects of Ultrafine Cobalt Iron Oxide Nanoparticle. Adv. Funct. Mater. 2016, 26 (24), 4414-4421.
17. Y. F. Xu , H.-S. Rao, X.-D. Wang, H.-Y. Chen, D.-B. Kuang,* C.-Y. Su. In situ formation of zinc ferrite modified Al-doped ZnO nanowire arrays for solar water splitting. J. Mater. Chem. A 2016, 4 (14), 5124-5129.
18. Y. F. Xu , H. S. Rao, B. X. Chen, Y. Lin, H. Y. Chen, D. B. Kuang,* C. Y. Su. Achieving Highly Efficient Photoelectrochemical Water Oxidation with a TiCl4 Treated 3D Antimony-Doped SnO2 Macropore/Branched α-Fe2O3 Nanorod Heterojunction Photoanode. Adv. Sci. 2015, 2 (7), 1500049. ( Advanced Science News报道 )
19. Y. F. Xu , W.-Q. Wu, H.-S. Rao, H.-Y. Chen, D.-B. Kuang,* C.-Y. Su. CdS/CdSe co-sensitized TiO2 nanowire-coated hollow spheres exceeding 6% photovoltaic performance. Nano Energy 2015, 11, 621-630.