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徐广蕊,青岛科技大学特聘副教授,主要研究方向包括燃料电池阴、阳极,高效电解海水/水及高性能电化学合成氨催化剂的设计、合成及相关机理研究。迄今在Adv. Funct. Mater., ACS Catal.,Chem. Sci., J. Mater. Chem. A 等国际著名期刊发表SCI 收录的论文40余篇,获授权中国发明专利3项。
近年部分第一/通讯作者论文如下:
1. Zhang, Q.; Zhang, W.; Zhu, J.; Zhou, X.; Xu, G.-R.; Chen, D.; Wu, Z.; Wang, L., Tuning d–p Orbital Hybridization of NiMoO4@Mo15Se19/NiSe2 Core-Shell Nanomaterials via Asymmetric Coordination Interaction Enables the Water Oxidation Process. Advanced Energy Materials 2024, 14 (20), 2304546.
2. Zhang, W.; Zhao, Y.; Li, J.; Miao, Y.; He, P.; Wu, Z.; Zhang, Y.; Xu, G.-R.; Wang, L., C‒C Bond Cleavage Driven by Lattice Oxygen during Ethanol Oxidation Process. Advanced Functional Materials 2025, DOI: 10.1002/adfm.202421763.
3. Zhang, W.; Jiang, X.; Dong, Z.; Wang, J.; Zhang, N.; Liu, J.; Xu, G.-R.; Wang, L., Porous Pd/NiFeOx Nanosheets Enhance the pH-Universal Overall Water Splitting. Advanced Functional Materials 2021, 31, 2107181.
4. Zhou, X.; Sun, Q.; Wang, X.; Zhang, R.; Li, B.; Wu, Z.; Chen, D.; Wang, L.; Xu, G.-R., Surface segregation on Ag@MNi (M = Pd, Pt, Rh, and Ru) core–shell nanocrystals for enhancing the oxygen reduction performance. Chemical Engineering Journal 2024, 500, 156765.
5. Xu, G.-R.; Zhang, N.; Sun, Q.; Zhang, W.; Wu, Z.; Wang, L., Self-supportive Pd0.2Ni58Fe30O11.8 nanowires for solar-driven self-powered water/seawater splitting with large current density. Chemical Engineering Journal 2023, 476, 146778.
6. Zhang, W.; Gao, J.; Gong, Q.; Liu, F.; Zhang, Y.; Xu, G.-R.; Wu, Z.; Wang, L., Mo-Induced Surface Reconstruction in Ni/Co-OOH Prickly Flower Clusters for Improving the Hydrogen Production in Alkaline Seawater Splitting. Small 2024, 20 (49), 2404858.
7. Zhao, Y.; Sun, Q.; Zhou, X.; Duan, Z.; Zhang, C.; Xu, G.-R.; Ju, D.; Wang, L., Scalable Synthesis of Ir Cluster Anchored on Porous Hollow Carbon Nanobowls for Enhancing pH-Universal Hydrogen Evolution. Small 2023, 19 (52), 2305343.
8. Xu, G.-R.; Dong, Z.; Zhao, Y.; Zhang, W.; Sun, Q.; Ju, D.; Wang, L., Alkali Etching of Porous PdCoZn Nanosheets for Boosting C−C Bond Cleavage of Ethylene Glycol Oxidation. Small 2024, 20 (10), 2306341.
9. Dong, Z.; Sun, Q.; Xu, G.-R.; Wu, Z.; Li, Y.; Lai, J.; Li, G.; Wang, L., Universal Synthesized Strategy for Amorphous Pd-Based Nanosheets Boosting Ambient Ammonia Electrosynthesis. Small Methods 2023, 7 (1), 2201225.
10. Sun, Q.; Miao, Y.; Zhang, R.; Xu, G.-R.; Zhang, C.; Liu, K.; Wu, Z.; Wang, L., Electron redistribution induced by p–d orbital hybridization in Co2P/FeP nanosheets boosts water electrooxidation. Journal of Materials Chemistry A 2024, 12 (45), 31518-31525.
11. Jiang, X.; Dong, Z. M.; Zhang, Q.; Xu, G. R.; Lai, J. P.; Li, Z. J.; Wang, L., Decoupled hydrogen evolution from water/seawater splitting by integrating ethylene glycol oxidation on PtRh0.02@Rh nanowires with Rh atom modification. Journal of Materials Chemistry A 2022, 10 (38), 20571-20579.
12. Zhao, Y.; Zhao, P.; Zhang, W.; Zhou, X.; Zhang, Q.; Miao, Y.; Xu, G.-R.; Wang, L., Void-confinement effects of porous hollow nanostructures boost selectivity and durability of oxygen reduction reaction. Fuel 2024, 369, 131691.
13. Zhang, Q.; Zhang, R.; Zhao, Y.; Sun, T.; Gao, J.; Xu, G.-R.; Wu, Z.; Yang, Y.; Wang, L., Surface/Interface Engineering of Hierarchical MoO2/MoNi4@Ru/RuO2 Heterogeneous Nanosheet Arrays for Alkaline Water Electrolysis with Fast Kinetics. Chinese Journal of Chemistry 2024, 42 (2), 119-128.
14. Sun, T.; Wang, X.; Duan, Z.; Zhang, Q.; Zhao, Y.; Xu, G.-R.; Wang, W.; Wang, L., In Situ Preparation of Polyamine-Derived Ru Cluster@N-Doped Porous Carbon Nanoplates for Hydrogen Evolution over Wide pH Ranges. Inorganic Chemistry 2023, 62 (41), 17012-17021.
15. Zhao, Y.; Sun, Q.; Zhang, C.; Liu, F.; Wang, L.; Xu, G.-R., Self-supported electrocatalysts for high-current-density water/seawater electrolysis. Journal of Alloys and Compounds 2023, 968, 172286.
16. Wang, J.; Zhang, W.; Dong, Z.; Zhang, N.; Zhang, Q.; Xie, C.; Wu, Z.; Xu, G.-R.; Wang, L., One-step CO assisted synthesis of hierarchical porous PdRuCu nanosheets as advanced bifunctional catalysts for hydrogen evolution and glycerol oxidation. International Journal of Hydrogen Energy 2022, 47 (78), 33319-33328.
17. Xu, G.-R.; Jiang, X.; Sun, T.; Wang, X.; Li, B.; Wu, Z.; Liu, H.; Wang, L., Ru branched nanostructure on porous carbon nanosheet for superior hydrogen evolution over a wide pH range. Journal of Alloys and Compounds 2023, 947, 169393.
18. Xu, G.-R.; Wang, J.; Zhang, N.; Zhang, Q.; Dong, Z.; Zhang, W.; Wu, Z.; Xie, C.-x.; Wang, L., Ferroelectric polarization promoted electrocatalytic hydrogen evolution on Bi2Fe4O9 nanoplates. Scripta Materialia 2023, 232, 115509.
19. Zhang, W.; Xu, G.-R.; Zhang, Q.; Zhao, Y.; Li, Y.; Wu, Z.; Liu, J.; Li, Z.; Wang, L., Ag@Pt core-shell icosahedral nanocrystals with solid solution interface improve pH-Universal hydrogen evolution at large current densities. Composites Part B: Engineering 2023, 254, 110600.
20. Jiang, X.; Dong, Z.; Wang, J.; Zhang, N.; Xu, G.-R.; Zhang, W.; Lai, J.; Li, Z.; Wang, L., Self-assembly of functionalized Echinops-like Rh porous nanostructure electrocatalysts for highly efficient seawater splitting. Journal of Materials Chemistry C 2021, 9 (26), 8314-8322.