1.论文 以第一/通讯作者在Matter、Nat.Commun.、J.Am. Chem. Soc.、Angew.Chem.等期刊发表高水平学术论文55篇(其中44篇SCI一区论文,25篇IF>10,13篇ESI高被引论文和2篇ESI热点论文)。研究成果被Nature、Nat.Mater.、Chem.Rev.等刊物引用5400余次,单篇最高引用900余次,H指数为32。部分代表性论文如下: [1]C.Feng, Q. Gao, G. Xiong, Y. Chen, Y.Pan*,Z. Fei, Y. Li, Y. Lu, C. Liu and Y. Liu*, Defect EngineeringTechnique for the Fabrication of LaCoO3 Perovskite Catalyst viaUrea Treatment for Total Oxidation of Propane, Appl.Catal. B: Environ.,2022, 304, 121005. [2]M. Li, M. Wang, D. Liu, Y.Pan*,S. Liu, K. Sun, Y. Chen, H. Zhu*, W. Guo, Y. Li, Z. Cui, B. Liu,Y. Liu, C. Liu, Atomically dispersed NiN4-Clactive site with axial Ni-Cl coordination for acceleratingelectrocatalytic hydrogen evolution, J.Mater. Chem. A,2022, 10.1039/D1TA08287F. [3]M. Wang, M. Li, Y. Liu, C. Zhang*,Y. Pan*,Structural Regulation of Single-Atomic Site catalysts for EnhancedElectrocatalytic CO2Reduction,NanoRes.,2022, org/10.1007/s12274-022-4175-z. [4]Y. Chen, Z. Liu, S. Liu, Y. Cheng, C. Zhang, J. Jiao, Y. Lu, W.Wang, K. Sun, X. Bi, A. Han, B. Liu, Y.Pan*,Y. Liu*, C. Liu, In-Situ Doping-Induced Crystal Form Transition ofAmorphous Pd–P Catalyst for Robust ElectrocatalyticHydrodechlorination, Appl.Catal. B: Environ.,2021, 284, 119713. [5]K. Wu, K. Sun, S. Liu, W.-C. Cheong, Z. Chen, C. Zhang,Y.Pan*,Y. Cheng, Z. Zhuang, X. Wei, Y. Wang, L. Zheng, Q. Zhang, D. Wang,Q. Peng, C. Chen*, Y. Li, Atomically dispersed Ni–Ru–Pinterface sites for high-efficiency pH-universal electrocatalysisof hydrogen evolution, NanoEnergy,2021, 80, 105467. [6]Z. Liu, M. Wang, S. Liu, Z. Chen, L. Yang, K. Sun, Y. Chen, L.Zeng, W. Wang, J. Zhao, G. Sun, B. Liu, Y.Pan*,Y. Liu*, C. Liu, Design of assembled composite of Mn3O4@Graphiticcarbon porous nano-dandelions: A catalyst for Low–temperatureselective catalytic reduction of NOxwith remarkable SO2resistance, Appl.Catal. B: Environ.2020, 269, 118731. [7]Z. Liu, G. Sun, C. Chen, K. Sun, L. Zeng, L. Yang, Y. Chen, W.Wang, B. Liu, Y. Lu, Y. Pan*, Y. Liu*, C. Liu, Fe-doped Mn3O4spinel nanoparticles with highly exposed Feoct-O-Mntetsitesfor efficient selective catalytic reduction (SCR) of NO withammonia at low temperatures,ACS Catal.,2020, 10, 6803-6809. [8]J. Jiao*, W. Yang,Y.Pan*,C. Zhang, S. Liu, C. Chen*, D. Wang*, Interface engineering ofpartially phosphidated Co@Co–P@NPCNTs for highly enhancedelectrochemical overall water splitting, Small,2020, 16, 2002124. [9]Y.Pan,C. Zhang, Z. Liu, C. Chen*, Y. Li*, Structural Regulation withAtomic-Level Precision: From Single-Atomic Site to Diatomic andAtomic Interface Catalysis, Matter,2020, 2, 78-110. [10]Y. Lin, K. Sun, S. Liu, X. Chen, Y. Cheng, W.-C. Cheong, Z. Chen,L. Zheng, J. Zhang*, X. Li, Y.Pan*,C. Chen*, Construction of CoP/NiCoP Nano-Tadpoles HeterojunctionInterface for Wide pH Hydrogen Evolution Electrocatalysis andSupercapacitor, Adv.Energy Mater.,2019, 9, 1901213. [11]Y.Pan,K. Sun, Y. Lin, X. Cao, Y. Cheng, S. Liu, L. Zeng, W.-C. Cheong,D. Zhao, K. Wu, Z. Liu, Y. Liu, D. Wang, Q. Peng, C. Chen,* Y. Li,Electronic Structure and d-BandCenter Control Engineering over M-doped CoP (M = Ni, Mn, Fe)Hollow Polyhedron Frames for Boosting Hydrogen Production, NanoEnergy,2019, 56, 411-419. [12]Y.Pan,Y. Chen, K. Wu, Z. Chen, S. Liu, X. Cao, W.-C. Cheong, T. Meng, J.Luo, L. Zheng, C. Liu,* D. Wang, Q. Peng, J. Li, C. Chen*,Regulating the coordination structure of single-atom Fe-NxCycatalytic sites for benzene oxidation, Nat.Commun.,2019, 10, 4290. [13]Y.Pan,S. Liu, K. Sun, X. Chen, B. Wang, K. Wu, X. Cao, W.-C. Cheong, R.Shen, A. Han, Z. Chen, L. Zheng, J. Luo, Y. Lin, Y. Liu, D. Wang,Q. Peng, Q. Zhang, C. Chen,* Y; Li, A Bimetallic Zn/FePolyphthalocyanine Derived Single-Atom Fe-N4Catalytic Site: A Superior Tri-Functional Catalyst for OverallWater Splitting and Zn-Air Battery, Angew.Chem. Int. Ed.,2018, 57, 8614-8618. [14]Y.Pan,R. Lin, Y. Chen, S. Liu, W. Zhu, X. Cao, W. Chen, K. Wu, W.-C.Cheong, Y. Wang, L. Zheng, J. Luo, Y. Lin, Y. Liu, C. Liu, J. Li,Q. Lu, X. Chen, D. Wang, Q. Peng, C. Chen,* Y. Li, Design ofsingle-atom Co-N5catalytic site: A robust electrocatalyst for CO2 reduction withnearly 100% CO selectivity and remarkable stability, J.Am. Chem. Soc.,2018, 140, 4218-4221. [15]Y.Pan,K. Sun, S. Liu, X. Cao, K. Wu, W.-C. Cheong, Z. Chen, Y. Wang, Y.Li, Y. Liu, D. Wang, Q. Peng, C. Chen,* Y. Li, Core-shellZIF-8@ZIF-67-derived CoP nanoparticle-embedded N-doped carbonnanotube hollow polyhedron for efficient overall water splitting,J.Am. Chem. Soc.,2018, 140, 2610-2618. 2.专利 [1]重油浆态床加氢碳载单原子催化剂及其制备与应用方法,202110224718.9 [2]一种重油浆态床加氢碳载钼钴双原子催化剂及其制备方法和应用方法,202110223640.9 [3]一种基于环糊精超分子化学可控制备碳载金属单原子催化剂及其制备方法和应用方法,202110223649.X [4]一种钴碲双原子位点催化剂的制备方法及应用方法,202010553698.5 [5]一种石油沥青基碳载单原子钼催化剂及其制备方法和应用方法,202210030369.1 |