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16. Lyu, Z. X.; Cai, J. L.; Zhang, X. G.*; Li, H. Q.; Huang, H. P.; Wang, S. P.; Li, T. Y.; Wang, Q. X.; Xie, Z. X.; Xie, S. F.*, Biphase Pd Nanosheets with Atomic-Hybrid RhOx/Pd Amorphous Skins Disentangle the Activity-Stability Trade-Off in Oxygen Reduction Reaction. Adv. Mater. 2024, DOI: 10.1002/adma.202314252.

15. Huang, H. P.; Liu, K.; Yang, F. L.*; Cai, J. L.; Wang, S. P.; Chen, W. Z.; Wang, Q. X.; Fu, L. H.; Xie, Z. X.; Xie, S. F.*, Breaking Surface Atomic Monogeneity of Rh2P Nanocatalysts by Defect-Derived Phosphorus Vacancies for Efficient Alkaline Hydrogen Oxidation. Angew. Chem. Int. Ed. 2023, e202315752. (Very Important Paper)

14. Wang, S. P.; Fu, L. H., Huang, H. P.; Fu, M.; Cai, J. L.; Lyu, Z. X.; Wang, Q. X.; Kuang, Q.; Xie, Z. X.; Xie, S. F.*, Local Oxidation Induced Amorphization of 1.5-nm-Thick Pt–Ru Nanowires Enables Superactive and CO-Tolerant Hydrogen Oxidation in Alkaline Media. Adv. Funct. Mater. 2023, 2304125.

13. Cai, J. L.; Zhang, X.; Lyu, Z. X.; Huang, H. P.; Wang, S. P.; Fu, L. H.; Wang, Q. X.; Yu, X. F.; Xie, Z. X.; Xie, S. F.*Host–Guest Ensemble Effect on Dual-Pt atom-on-Rh Nanosheets Enables High-Efficiency and Anti-CO Alkaline Hydrogen Oxidation. ACS Catalysis 2023, 13(10): 6974-6982.

12. Lyu, Z. X.; Zhang, X.; Liao, X. Y.; Liu, K.; Huang, H. P.; Cai, J. L.; Kuang, Q.; Xie, Z. X.; Xie, S. F.*Two-dimensionally Assembled Pd-Pt-Ir Super-Nanosheets with Subnanometer Interlayer Spacings toward High-efficiency and Durable Water Splitting.ACS Catalysis 2022, 12(9):5305-5315.

11. Huang, H. P.; Fu, L. H.; Kong, W. Q.; Ma, H. R.; Zhang, X.*; Cai, J. L.; Wang, S. P.; Xie, Z. X.; Xie, S. F.*,  Equilibrated PtIr/IrOx Atomic Heterojunctions on Ultrafine 1D Nanowires Enable Superior Dual-Electrocatalysis for Overall Water Splitting. Small 2022, 202201333.

10. Lyu, Z.; Zhang, X. G.; Wang, Y.; Liu, K.; Qiu, C.; Liao, X.; Yang, W.; Xie, Z.; Xie, S. F.*, Amplified Interfacial Effect in an Atomically Dispersed RuOx-on-Pd 2D Inverse Nanocatalyst for High-Performance Oxygen Reduction. Angew. Chem. Int. Ed. 2021, 60,16093-16100.

9. Wang, W.; Zhang, X.; Zhang, Y.; Chen, X.; Ye, J.; Chen, J.; Lyu, Z.; Chen, X.; Kuang, Q.; Xie, S. F.*, Xie Z. Edge Enrichment of Ultrathin 2D PdPtCu Trimetallic Nanostructures Effectuates Top-Ranked Ethanol Electrooxidation. Nano Lett. 2020, 20, 5458-5464.

8. Wang, W.; Chen, X.; Zhang, X.; Ye, J.; Xue, F.; Zhen, C.; Liao, X.; Li, H.; Li, P.; Liu, M.; Kuang, Q.; Xie, Z.*; Xie, S. F.*, Quatermetallic Pt-Based Ultrathin Nanowires Intensified by Rh Enable Highly Active and Robust Electrocatalysts for Methanol Oxidation. Nano Energy 2020, 71, 104623.

7. Liu, K.; Wang, W.; Guo, P.; Ye, J. Y.; Wang, Y.; Li, P. T.; Lyu, Z.; Geng, Y.; Liu, M.; Xie, S. F.*, Replicating the Defect Structures on Ultrathin Rh Nanowires with Pt to Achieve Superior Electrocatalytic Activity toward Ethanol Oxidation. Adv. Funct. Mater. 2019, 29, 1806300. 

6. Wang, W.; Cao, Z. M.; Liu, K.; Chen, J. Y.; Wang. Y. Y.; Xie, S. F.*, Ligand-Assisted, One-Pot Synthesis of Rh-on-Cu Nanoscale Sea Urchins with High-Density Interfaces for Boosting CO Oxidation. Nano Lett. 2017, 17, 7613-7619. 

5. Xie, S. F.; Choi, S. I.; Lu, N.; Roling, L. T.; Herron, J. A.; Zhang, L.; Park, J.; Wang, J.; Kim, M. J.; Xie, Z. X.; Mavrikakis, M.; Xia, Y.*,  Atomic Layer-by-Layer Deposition of Pt on Pd Nanocubes for Catalysts with Enhanced Activity and Durability toward Oxygen Reduction. Nano Lett.201414, 3570-3576.

4. Xie, S. F.Peng, H.-C.; Lu, N.; Wang, J.; Kim, M. J.; Xie, Z. X. and Xia, Y.* Confining the Nucleation and Overgrowth of Rh to the {111} Facets of Pd Nanocrystal Seeds: The Roles of Capping Agent and Surface Diffusion. J. Am. Chem. Soc.2013, 135, 16658-16667.  

3. Xie, S. F.;Zhang, H.; Lu, N.; Jin, M.; Wang, J.; Kim, M. J.; Xie, Z. X. and Xia, Y.* Synthesis of Rhodium Concave Tetrahedrons by Collectively Manipulating the Reduction Kinetics, Facet-Selective Capping, and Surface Diffusion. Nano Lett. 2013, 13. 6262-6268.

2. Xia, X.; Xie, S. F.; Liu, M; (co-first) Peng, H.-C.; Lu, N.; Wang, J.; Kim, M. J. and Xia, Y.* On the role of surface diffusion in determining the shape or morphology of noble-metal nanocrystals. Proc. Natl. Acad. Sci. USA2013, 110, 6669-6673. 

1. Xie, S. F.; Lu, N.; Xie, Z. X.; Wang, J.; Kim, M. J. and Xia, Y.* Synthesis of Pd-Rh core-frame concave nanocubes and their conversion to Rh cubic nanoframes by selective etching of the Pd cores. Angew. Chem. Int. Ed.201251, 10266-10270.