近五年代表性著作(* 通讯作者,┴ 共同一作,第一顺位为贾毅教授直接指导的研究生)
【1】Y. Jia, L. Zhang, J. Chen, D. Yang, Z. Zhu, S. Wang, L. Dai*, X. Yao*, Identification of active sites for acidic oxygen reduction on carbon catalysts with and without nitrogen doping, Nature Catalysis,2019, 2, 688. (封面报道) (ESI高被引论文)
【2】X Wang┴, Y Jia┴, X Mao, L Zhang, D Liu, L Song, X Yan, J Chen, D Yang, J Zhou, K Wang, A Du*,X Yao*, A directional synthesis for topological defect in carbon, Chem,2020, 6, 2009.
【3】 Q Yang┴, Y Jia┴, F Wei, L Zhuang, D Yang, J Liu, X Wang, S Lin, P Yuan*, X Yao*, Understanding the Activity of Co‐N4−xCx in Atomic Metal Catalysts for Oxygen Reduction Catalysis, Angewandte Chemie, 2020, 59, 6122. (ESI高被引论文)
【4】 X Wang, Y Jia, X Mao, D Liu, W He, J Li, J Liu, X Yan, J Chen, L Song, A Du, X Yao*, Edge‐Rich Fe−N4 Active Sites in Defective Carbon for Oxygen Reduction Catalysis, Advanced Materials,2020, 32 (16), 2000966. (ESI高被引论文)
【5】 X. Lyu, Y. Jia*, X. Mao, D. H. Li, D. J. Yang, Q. Wang, A. J. Du, X Yao*, Gradient-Concentration Design of Stable Core–Shell Nanostructure for Acidic Oxygen Reduction Electrocatalysis. Advanced Materials,2020, 32,2003493.
【6】 L. Zhuang┴, Y. Jia┴, H. Liu, Z. Li, L. Zhang, X. Wang, D. Yang, Z. Zhu*, X. Yao*, S-modified oxygen vacancies in iron-cobalt oxide nanosheets: Enabling extremely high activity of oxygen evolution reaction for achieving industrial water splitting benchmark. Angewandte Chemie-International Edition,2020, 59, 14664.
【7】 L. Zhuang, L. Ge, H. Liu, Z. Jiang, Y. Jia, R. A. Hocking, M. Li, L. Zhang, X. Wang, X. Yao*, Z. Zhu*, A Surfactant-Free and Scalable General Strategy for Synthesizing Ultrathin Two-Dimensional Metal–Organic Framework Nanosheets for the Oxygen Evolution Reaction, Angewandte Chemie-International Edition,2019, 58, 18565.
【8】L. Zhang┴, Y. Jia┴, X. Wang, S. Feng, X. Yao*, Charge Polarization from Atomic Metals on Adjacent Graphitic Layers for Enhancing the Hydrogen Evolution Reaction, Angewandte Chemie-International Edition,2019, 58, 9404.
【9】 Y. Jia, K. Jiang, H. Wang*, X. Yao*, The Role of Defect Sites in Nanomaterials for Electrocatalytic Energy Conversion, Chem,2019, 5, 1371. (ESI高被引论文)
【10】L. Zhuang┴, Y. Jia┴, H. Liu, X. Wang, R. K. Hocking, H. Liu, J. Chen, L. Ge, L. Zhang, M. Li, C. Dong, Y. Huang, S. Shen, D. Yang, Z. Zhu, X. Yao*, Defect-induced Pt-Co-Se coordinated sites with highly asymmetrical electronic distribution for boosting oxygen-involving electrocatalysis, Advanced Materials, 2019, 1805581. (ESI高被引论文)
【11】 X. Wang, L. Zhuang, Y. Jia, D. Yang, Z. Zhu*, X. Yao*, Plasma-Triggered Synergy of Exfoliation, Phase Transformation and Surface Engineering in Cobalt Diselenide for Enhanced Water Oxidation, Angewandte Chemie-International Edition,2018, 130, 16659.
【12】 X. Yan, Y. Jia, X. Yao*, Defects on Carbons for Electrocatalytic Oxygen Reduction, Chemical Society Reviews,2018, 47, 7628. (ESI高被引论文)
【13】 D Li┴, Y Jia┴, G Chang, J Chen, H Liu, J Wang, Y Hu, Y Xia, D Yang*, X Yao*, A Defect-Driven Metal-Free Electrocatalyst for Oxygen Reduction in Acidic Electrolyte, Chem,2018, 4, 2345. (ESI高被引论文)
【14】 L Zhang, J M Fischer, Y Jia*, X Yao*, Coordination of Atomic Co-Pt Coupling Species at Carbon Defects as Active Sites for Oxygen Reduction Reaction, Journal of the American Chemical Society,2018, 140, 10757. (ESI高被引论文)
【15】 L Zhang┴, Y Jia┴, G Gao, X Yan, Ning Chen, J Chen, M T Soo, B Wood, D Yang, A Du, X Yao*, Defects on graphene trapping nickel single atoms for hydrogen and oxygen evolution reactions, Chem,2018, 4, 285. (ESI高被引论文)
【16】 Y Jia, L Zhang, G Gao, H Chen, B Wang, J Zhou, M T Soo, M Hong, X Yan, G Qian, J Zou, A Du, X Yao*, A heterostructure coupling of exfoliated Ni-Fe hydroxide nanosheet and defective graphene as a bifunctional electrocatalyst for overall water splitting, Advanced Materials,2017, 29, 1700017. (ESI高被引论文)
【17】 Y. Jia, L. Zhang, A. Du, G. Gao, J. Chen, X. Yan, C. L. Brown, X. Yao*, Defect Graphene as a Tri-functional Catalyst for Electrochemical Reactions, Advanced Materials,2016, 28, 9532. (ESI高被引论文)
【18】Q Yang, H. Liu, P. Yuan, Y Jia, X Yao*, Single Carbon Vacancy Traps Atomic Platinum for Hydrogen Evolution Catalysis, Journal of the American Chemical Society,2022, 144, 2171.