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2022

42) Y. Pan, X. Ma, M. Wang, X. Yang, S. Liu, H.-C. Chen, Z. Zhuang, Y. Zhang, W.-C. Cheong, C. Zhang, X. Cao, R. Shen, Q. Xu, W. Zhu, Y. Liu, X. Wang, X. Zhang, W. Yan, J. Li, H. M. Chen, C. Chen, Y. Li, "Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction", Adv. Mater. 2022, 34(29), 2203621, DOI: 10.1002/adma.202203621

41) B.-T. Qiao, X. Yin, F. Gao, T. Zhang, A. Wang, J. Li, J. Yang, "Single-atom Catalysis in Energy Conversion: Opportunities and Challenges", Bulletin of National Natural Science Foundation of China 2022, 36(6), 944-954 (in Chinese).        乔波涛,伊晓东,高飞雪,张涛,王爱琴, 李隽,杨俊林, "能源转化过程中的单原⼦催化:机遇与挑战", 中国科学基金

40) L. Li, Y.-F. Jiang, T. Zhang, H. Cai, Y. Zhou, B. Lin, X. Lin, Y. Zheng, L. Zheng, X. Wang, C.-Q. Xu, C.-t. Au, L. Jiang, J. Li, "Size sensitivity of supported Ru catalysts for ammonia synthesis: From nanoparticles to subnanometric clusters and atomic clusters", Chem 2022, 8(3), 749-768, DOI: : 10.1016/j.chempr.2021.11.008

39) Y.-Q. Tian, Y.-S. Cui, J.-H. Zhu, C.-Q. Xu, X.-Y. Yi, J. Li, C. Liu, "Ancillary ligand-regulated Ti(IV)-based metallocalixarene coordination cages for photocatalytic H2 evolution", Chem. Commun. 2022, 58(64), 9034-9037, DOI: 10.1039/D2CC03131K

38) J. Zhang, X. Cao, Y.-F. Jiang, S.-F. Hung, W. Liu, H. B. Yang, C.-Q. Xu, D.-S. Li, T. Zhang, Y. Li, J. Li, B. Liu, "Surface enrichment of Ir on the IrRu alloy for efficient and stable water oxidation catalysis in acid", Chem. Sci. 2022, 13(41), 12114-12121, DOI: 10.1039/D2SC03947H

37) J.-C. Liu, L. Luo, H. Xiao, J. Zhu, Y. He, J. Li, "Metal Affinity of Support Dictates Sintering of Gold Catalysts", J. Am. Chem. Soc. 2022, 144(45), 20601-20609, DOI: 10.1021/jacs.2c06785

36) X.-L. Ma, M. Li, J.-B. Lu, C.-Q. Xu, J. Li, "Recent Developments of Dinitrogen Activation on Metal Complexes and Clusters", Chin. J. Struct. Chem 2022, 41(12), 2212080-2212088, DOI: 10.14102/j.cnki.0254-5861.2022-0197

35) S. Qian, Y. Wang, J. Li, "Single Iron-dimer Catalysts on MoS2 Nanosheet for Potential Nitrogen Activation", Chem. Res. Chin. Univ. 2022, 38(5), 1226-1231, DOI: 10.1007/s40242-022-2273-9

34) M. B. Z. Hegazy, K. Harrath, D. Tetzlaff, M. Smialkowski, D. Siegmund, J. Li, R. Cao, U.-P. Apfel, "Boosting the overall electrochemical water splitting performance of pentlandites through non-metallic heteroatom incorporation", iScience 2022, 25(10), 105148, DOI: 10.1016/j.isci.2022.105148

33) X. Zhang, C. Cao, Y. Bai, C. Zhu, H. Zai, S. Ma, Y. Chen, Z. Cui, C. Shi, C. Wang, C. Zhou, G. Yuan, Z. Gao, J. Hong, J. Dou, H. Wang, H. Zhou, H. Xiao, J. Li, Q. Chen, "Impeded degradation of perovskite solar cells via the dual interfacial modification of siloxane", Sci. China-Chem. 2022, 65(11), 2299-2306, DOI: 10.1007/s11426-022-1381-1

32) S.-J. Qian, H. Cao, J.-W. Chen, J.-C. Chen, Y.-G. Wang, J. Li, "Critical Role of Explicit Inclusion of Solvent and Electrode Potential in the Electrochemical Description of Nitrogen Reduction", ACS Catal. 2022, 12(18), 11530-11540, DOI: 10.1021/acscatal.2c03186

31) C. Cao, J. Hu, W. Zhang, X. Xu, D. Chen, F. Yu, J. Li, H.-S. Hu, D. Lv, M.-H. Yung, "Progress toward larger molecular simulation on a quantum computer: Simulating a system with up to 28 qubits accelerated by point-group symmetry", Phys. Rev. A. 2022, 105(6), 062452, DOI: 10.1103/PhysRevA.105.062452

30) X. Lu, Y. Zhang, W. Cheng, Y. Liu, X. Wu, X. Li, F. Dong, J. Li, X. Nie, "Experimental and computational study on the inhibitory effect of phytic acid on U(VI) biomineralization by Shewanella putrefaciens", Chem. Eng. J. 2022, 450, 138364, DOI: 10.1016/j.cej.2022.138364

29) Z.-L. Wang, T.-T. Chen, W.-J. Chen, W.-L. Li, J. Zhao, X.-L. Jiang, J. Li, L.-S. Wang, H.-S. Hu, "The smallest 4f-metalla-aromatic molecule of cyclo-PrB2 with Pr–B multiple bonds", Chem. Sci. 2022, 13(34), 10082-10094, DOI: 10.1039/D2SC02852B

28) Y.-S. Cui, J.-X. Zhang, C.-Q. Xu, X.-L. Jiang, J. Li, "Bonding Nature of “Ionic Carbenes” in [M33-CH2)]-Containing Compounds: the Covalent Interaction", Inorg. Chem. 2022, 61(31), 12349-12355, DOI: 10.1021/acs.inorgchem.2c01726

27) J. Zhao, C.-X. Chi, L.-Y. Meng, X.-L. Jiang, J. Grunenberg, H.-S. Hu, M.-F. Zhou, J. Li, W. H. E. Schwarz, "Cis- and Trans-Binding Influences in [NUO·(N2)n]+", J. Chem. Phys. 2022, 157(5), 054301, DOI: 10.1063/5.0098068

26) 中国科学院, <配位化学进展:2006-2016>第三章:理论配位化学,科学出版社, 2022

25) H. Xiang, H. Yan, J. Liu, R. Cheng, C.-Q. Xu, J. Li, C. Yao, "Identifying the Real Chemistry of the Synthesis and Reversible Transformation of AuCd Bimetallic Clusters", J. Am. Chem. Soc. 2022, 144(31), 14248-14257, DOI: 10.1021/jacs.2c05053

24) Y.-F. Jiang, J.-C. Liu, C.-Q. Xu, J. Li, H. Xiao, "Breaking the scaling relations for efficient N2-to-NH3 conversion by a bowl active site design: Insight from LaRuSi and isostructural electrides", Chin. J. Catal. 2022, 43(8), 2183-2192, DOI: 10.1016/S1872-2067(22)64129-9

23) J.-C. Jiang, J.-C. Chen, M.-d. Zhao, Q. Yu, Y.-G. Wang, J. Li, "Rational design of copper-based single-atom alloy catalysts for electrochemical CO2 reduction", Nano Res.  2022, 15(8), 7116-7123, DOI: 10.1007/s12274-022-4476-2

22) W. Cai, Y.-F. Jiang, J. Zhang, H. Yang, J. Zhang, C.-Q. Xu, W. Liu, J. Li, B. Liu, "Ruthenium/titanium oxide interface promoted electrochemical nitrogen reduction reaction", Chem Catal.  2022, 2(7), 1764-1774, DOI: 10.1016/j.checat.2022.05.009

21) W.-J. Fu, W.-L. Li, Y.-X. Zhang, J.-X. Zhang, J. Li, "Quantum Chemical Studies of the Electronic Structures of Anti-Tumor Agents: AuIIIL+ (L=Porphine, Tetraphenylporphyrin)", Comp. Theore. Chem. 2022, 1211, 113685, DOI: 10.1016/j.comptc.2022.113685

20) X.-K. Zhao, C.-S. Cao, J.-C. Liu, J.-B. Lu, J. Li, H.-S. Hu , “Theoretical Prediction of Graphene-like 2D Uranyl Material with p-Orbital Antiferromagnetism”, Chem. Sci. 2022, 13, DOI: 10.1039/D2SC02017C

19) X. Wang, Z. Han, W. Wei, H.-S. Hu, P. Li, P. Sun, X. Liu, Z. Lv, F. Wang, Y. Cao, Z. Guo, J. Li, J. Zhao, “An Unexpected All-Metal Aromatic Tetranuclear Silver Cluster in Human Copper Chaperone Atox1”, Chem. Sci. 2022, 13(24), 7269-7275, DOI: 10.1039/D1SC07122J

18) Z. Huang, J.-X. Liang, D. Tang, Y. Chen, W. Qu, X. Hu, J. Chen, Y. Dong, D. Xu, D. Golberg, J. Li, X. Tang, "Interplay between remote single-atom active sites triggers speedy catalytic oxidation", Chem 2022, 8(11), 3008-3017, DOI: 10.1016/j.chempr.2022.07.002

17) Y.-Q. Tian, Y.-S. Cui, W.-D. Yu, C.-Q. Xu, X.-Y. Yi, J. Yan, J. Li, C. Liu, "An Ultrastable Ti-Based Metallocalixarene Nanocage Cluster with Photocatalytic Amine Oxidation Activity", Chem. Commun. 2022, 58(40), 6028-6031, DOI: 10.1039/D2CC01740G

16) Y. Guo, X. Yu, Q. Yu, Y. Li, Y. Liu, C. Zhao, L. Jin, Z. Liu, J. Li, "Exploring Stability of Transition-Metal Single Atoms on Cu2O Surfaces", J. Phys. Chem. C 2022, 126(18), 8065-8078, DOI: 10.1021/acs.jpcc.2c00751

15) S. H. Talib, Z. Lu, B. Bashir, S. Hussain, K. Ahmad, S. U. D. Khan, S. Haider, Z. Yang, K. Hermansson, J. Li, “CO Oxidation on MXene (Mo2CS2) Supported Single-Atom Catalyst: A Termolecular Eley-Rideal Mechanism”, Chin. Chem. Lett. 2022, 33, DOI: 10.1016/j.cclet.2022.04.010

14) Z. Wang, J.-B. Lu, X. Dong, Q. Yan, X. Feng, H.-S. Hu, S. Wang, J. Chen, J. Li, C. Xu, “Ultra-Efficient Americium/Lanthanide Separation through Oxidation State Control”, J. Am. Chem. Soc. 2022, 144(14), 6383-6389, DOI: 10.1021/jacs.2c00594

13) M. J. Huelsey, S. Baskaran, S. Ding, S. Wang, H. Asakura, S. Furukawa, S. Xi, Q. Yu, C.-Q. Xu, J. Li, N. Yan, "Identifying Key Descriptors for the Single-Atom Catalyzed CO Oxidation", CCS Chem. 2022, 4, DOI: 10.31635/ccschem.022.202201914

12) C. Zhu, J.-X. Liang, Y.-G. Wang, J. Li, "Non-Noble Metal Single-Atom Catalyst with MXene Support: Fe1/Ti2CO2 for CO Oxidation", Chin. J. Catal. 2022, 43(7), 1830-1841, DOI: 10.1016/S1872‐2067(21)64027‐5

11) J. Jiao, N.-N. Zhang, C. Zhang, N. Sun, Y. Pan, C. Chen, J. Li, M. Tan, R. Cui, Z. Shi, J. Zhang, H. Xiao, T. Lu, “Doping Ruthenium into Metal Matrix for Promoted pH-Universal Hydrogen Evolution”, Adv. Sci. 2022, 9(11), 2200010, DOI: 10.1002/advs.202200010

10) Z. Lin, M. E.-Escribano, J. Li, “Recent Progress and Perspectives on Single-Atom Catalysis”, J. Mater. Chem. A 2022, 10(11), 5670-5672, DOI: 10.1039/d2ta90050e

9) K. Wussow, A. Abram, K. Köhler, C.-R. Chang, A. Genest, J. Li, N. Rösch, "Leaching of Palladium Atoms from Small Cluster Models during Heck Reactions-An Experimental and Theoretical Study", Catal. Commun. 2022, 165, 106441, DOI: 10.1016/j.catcom.2022.106441

8) G. D. Suarez, D. A. Suarez, Y. Y. K. Tang, J.-X. Zhang, J. Li, S. Nagl, P. P.-H. Cheung, "Uncovering Mechanisms of RT-LAMP Colorimetric SARS-CoV-2 Detection to Improve Assay Reliability", Anal. Methods 2022, 14(4), 378-382, DOI: 10.1039/D1AY01395E

7) W.-J. Chen, Y.-Y. Zhang, W.-L. Li, H. W. Choi, J. Li, L.-S. Wang, "AuB8-: An Au-Borozene Complex", Chem. Commun. 2022, 58(19), 3134-3137, DOI: 10.1039/D1CC07303F

6) Y. Zhou, C.-Q. Xu, Z. Tan, H. Cai, X. Wang, J. Li, L. Zheng, C.-t. Au, J. Li, L. Jiang, “Integrating Dissociative and Associative Routes for Efficient Ammonia Synthesis over a TiCN-Promoted Ru-Based Catalyst”, ACS Catal. 2022, 12(4), 2651-2660, DOI: 10.1021/acscatal.1c05613

5) X.-L. Ma, Y. Yang, L.-M. Xu, H. Xiao, W.-Z. Yao, J. Li, "Theoretical Investigation on Hydrogenation of Dinitrogen Triggered by Singly Dispersed Bimetallic Sites", J. Mater. Chem. A 2022, 10(11), 6146-6152, DOI: 10.1039/D1TA08350C

4) Y. Meng, J.-X. Liang, C. Zhu, C.-Q. Xu, J. Li, "Theoretical Studies of MXene-Supported Single-Atom Catalysts: Os1/Ti2CS2 for Low-Temperature CO Oxidation", Sci. China Mat. 2022, 65(5), 1303-1312, DOI: 10.1007/s40843-021-1950-0

3) Y.-Y. Zhang, C. Wang, G. Li, X. Zang, Y. Yu, H.-S. Hu, J. Yang, W. Zhang, D. Dai, G. Wu, L. Jiang, X. Yang, J. Li, "Infrared Spectroscopic Signature of the Structural Diversity of the Water Heptamer", Cell Rep. Phys. Sci. 2022, 3(2), 100748, DOI: 10.1016/j.xcrp.2022.100748

2) S. H. Talib, X. Yu, Z. Lu, K. Ahmad, T. Yang, H. Xiao, J. Li, "A Polyoxometalate Cluster-Based Single-Atom Catalyst for NH3 Synthesis via an Enzymatic Mechanism", J. Mater. Chem. A 2022, 10(11), 6165-6177, DOI: 10.1039/D1TA07903D

1) Y. Deng, Y. Guo, Z. Jia, J.-C. Liu, J. Guo, X. Cai, C. Dong, M. Wang, C. Li, , J. Diao, Z. Jiang, J. Xie, N. Wang, H. Xiao, B. Xu, H. Zhang, H. Liu,J. Li, D. Ma, "Few-Atom Pt Ensembles Enable Efficient Catalytic Cyclohexane Dehydrogenation for Hydrogen Production", J. Am. Chem. Soc. 2022, 144(8), 3535-3542, DOI: 10.1021/jacs.1c12261

 

 

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