简体中文

2024


1.Z. Li, G. Lin, L. Wang, H. Lee, J. Du, T. Tang, G. Ding, R. Ren, W. Li, X. Cao, S. Ding, W. Ye, W. Yang, L. Sun*, Seed-assisted formation of NiFe anode catalysts for anion exchange membrane water electrolysis at industrial-scale current density, Nature Catalysis 2024, 7, 944–952. (IF=44.6)

2.T. Tang, H. Lee, Z. Wang, Z. Li, L. Wang, D. Chen, W. Zheng, Q. Liu, L. He, G. Ding, Z. Tian, L. Sun*, Bioinspired anion exchange membranes with dual steric cross-linking centers for industrial-scale water electrolysis, Energy & Environmental Science 2024, 17, 7816–7828. (IF=31)

3.X. Zhang, X. Liu, Y. Ding, B. Ding, P. Shi, O. A. Syzgantseva, M. A. Syzgantseva, Z. Fei, J. Chen, G. Rahim, M. Han, K. Zhang, Y. Zhou, K. G. Brooks, R. Wang, L. Sun*, P. J. Dyson*, S. Dai, M. K. K. Nazeeruddin*, Y. Ding*, 3D Conjugated Hole Transporting Materials for Efficient and Stable Perovskite Solar Cells and Modules, Advanced Materials 2024, 36, 2310619. (IF=26.8)

4.K. Wang, P. Li, B. Zhang*, Industrial-grade electrocatalytic synthesis of glycine from oxalic acid and nitrate using a porous PbSnBi catalyst, Applied Catalysis B: Environment and Energy 2024, 361, 124653. (IF=21.1)

5.S. Ding, Z. Li, G. Lin, L. Wang, A. Dong, L. Sun*, Enhancing Mass Transfer in Anion Exchange Membrane Water Electrolysis by Overlaid Nickel Mesh Substrate, ACS Energy Letters 2024, 9, 3719–3726. (IF=18.9)

6.Y. Wu, C. Tao, L. Wang, S. Sun, Q. Liu, B. Zhang, L. Sun, Decoupling Inherent Corrosion from Water Oxidation by Coating Bilayer Ionomers on Photoanodes, ACS Energy Letters 2024, 9, 3227–3236. (IF=18.9)

7.H. Dai, T. Song, X. Yue, S. Wei, F. Li, Y. Xu, S. Shu, Z. Cui, C. Wang, J. Gu*, L. Duan*, Cu single-atom electrocatalyst on nitrogen-containing graphdiyne for CO2 electroreduction to CH4, Chinese Journal of Catalysis 2024, 64, 123–132. (IF=17.7)

8.H. Zou, D. Cheng, C. Tang, W. Luo, H. Xiong, H. Dong, F. Li, T. Song, S. Shu, H. Dai, Z. Cui, Z. Lu, L. Duan*, Electronic perturbation of Cu nanowire surfaces with functionalized graphdiyne for enhanced CO2 reduction reaction, National Science Review 2024, 11. (IF=17.1)

9.Z. Hu, F. Gao, H. Qin, X. Cui, L. Wang, W. Yang, C. Lu, B. Zhang, L. Sun*, Bright Nanocomposites based on Quantum Dot‐Initiated Photocatalysis, Angewandte Chemie International Edition 2024, 64, e202415645. (IF=17)

10.T. Song, H. Liu, H. Zou, C. Wang, S. Shu, H. Dai, L. Duan*, Metal‐Free Wet Chemistry for the Fast Gram‐Scale Synthesis of γ‐Graphyne and its Derivatives, Angewandte Chemie International Edition 2024, 63, e202411228. (IF=17)

11.P. Li, W. Zhao, K. Wang, T. Wang, B. Zhang*, Photocatalytic Synthesis of Glycine from Methanol and Nitrate, Angewandte Chemie International Edition 2024, 63, e202405370. (IF=17)

12.L. Ma, T. Wang*, Rational Understanding Hydroxide Diffusion Mechanism in Anion Exchange Membranes during Electrochemical Processes with RDAnalyzer, Angewandte Chemie International Edition 2024, 63, e202403614. (IF=17)

13.W. Zheng, L. He, T. Tang, R. Ren, H. Lee, G. Ding, L. Wang, L. Sun*, Poly(Dibenzothiophene‐Terphenyl Piperidinium) for High‐Performance Anion Exchange Membrane Water Electrolysis, Angewandte Chemie International Edition 2024, 63, e202405738. (IF=17)

14.S. Shu, T. Song, C. Wang, H. Dai, L. Duan*, [2+1] Cycloadditions Modulate the Hydrophobicity of Ni‐N4 Single‐Atom Catalysts for Efficient CO2 Electroreduction, Angewandte Chemie International Edition 2024, 63, e202405650. (IF=17)

15.L. Yin, R. Ren, L. He, W. Zheng, Y. Guo, L. Wang, H. Lee, J. Du, Z. Li, T. Tang, G. Ding, L. Sun*, Stable Anion Exchange Membrane Bearing Quinuclidinium for High‐performance Water Electrolysis, Angewandte Chemie International Edition 2024, 63, e202400764. (IF=17)

16.H. Zou, S. Shu, W. Yang, Y.-c. Chu, M. Cheng, H. Dong, H. Liu, F. Li, J. Hu, Z. Wang, W. Liu, H. M. Chen, L. Duan*, Steering acidic oxygen reduction selectivity of single-atom catalysts through the second sphere effect, Nature Communications 2024, 15, 10818. (IF=15.7)

17.Q. Liu, T. Tang, Z. Tian, S. Ding, L. Wang, D. Chen, Z. Wang, W. Zheng, H. Lee, X. Lu, X. Miao, L. Liu, L. Sun*, A high-performance watermelon skin ion-solvating membrane for electrochemical CO2 reduction, Nature Communications 2024, 15, 6722. (IF=15.7)

18.X. Cao, Y. Ding, D. Chen, W. Ye, W. Yang, L. Sun*, Cluster-Level Heterostructure of PMo12/Cu for Efficient and Selective Electrocatalytic Hydrogenation of High-Concentration 5-Hydroxymethylfurfural, Journal of the American Chemical Society 2024, 146, 25125–25136. (IF=15.7)

19.Z. Li, L. Wang, L. Sun, W. Yang*, Dynamic Cation Enrichment during Pulsed CO2 Electrolysis and the Cation-Promoted Multicarbon Formation, Journal of the American Chemical Society 2024, 146, 23901–23908. (IF=15.7)

20.Y. Guo, L. He, Y. Ding, L. Kloo, D. A. Pantazis, J. Messinger, L. Sun*, Closing Kok’s cycle of nature’s water oxidation catalysis, Nature Communications 2024, 15, 5982. (IF=15.7)

21.R. Sun, J. Zang, R. Lai, W. Yang*, B. Ji*, Near-Infrared-to-Visible Photon Upconversion with Efficiency Exceeding 21% Sensitized by InAs Quantum Dots, Journal of the American Chemical Society 2024, 146, 17618–17623. (IF=15.7)

22.Q. Liu, Q. Jiang, L. Li, W. Yang*, Spontaneous Reconstruction of Copper Active Sites during the Alkaline CORR: Degradation and Recovery of the Performance, Journal of the American Chemical Society 2024, 146, 4242–4251. (IF=15.7)

23.X. Luo, G. Boschloo, L. Kloo, L. Sun*, B. Xu, Spiro[fluorene-9, 9′-xanthene]-Based Hole-Transporting Materials for Photovoltaics: Molecular Design, Structure–Property Relationship, and Applications, Accounts of Materials Research 2024, 5, 220–235. (IF=14.7.)

24.P. Li, B. Zhang*, Photocatalytic Conversion of Biomass and Nitrate into Glycine, ACS Catalysis 2024, 14, 18345–18353. (IF=13.1)

25.H. Li, Y. Wu, Y. Wang, K. Zhang, J. Zhu, Y. Ji, T. Gu, W. Nie, L. Sun*, Y. Wang*, Bifunctional RhIII-Complex-Catalyzed CO2 Reduction and NADH Regeneration for Direct Bioelectrochemical Synthesis of C3 and C4, ACS Catalysis 2024, 14, 17201–17208. (IF=13.1)

26.H.-Q. Chen, W. Zhao, L. Wang, Z. Chen, W. Ye, J. Zang, T. Wang*, L. Sun, W. Yang*, Origin of Metal–Support Interactions for Selective Electrochemical CO2 Reduction into C1 and C2+ Products, ACS Catalysis 2024, 14, 11794–11802. (IF=13.1)

27.W. Zhao, T. Wang*, Revisiting Factors Controlling the Electrochemical CO2 Reduction to CO and HCOOH on Transition Metals with Grand Canonical Density Functional Theory Calculations, ACS Catalysis 2024, 14, 8549–8560. (IF=13.1)

28.Y. Jia, D. Li, C. Liu, T. Song, L. Duan, F. Li, F. Li, Y. Ji*, L. Sun*, K. Fan*, Regulating Cu Oxidation State for Electrocatalytic CO2 Conversion into CO with Near‐Unity Selectivity via Oxygen Spillover, Small 2024, 20, 2402537. (IF=12.1)

29.J. Li, F. Zhang, H. Xiong, Y. Cai, B. Zhang*, Molecular catalysts for electrocatalytic ammonia oxidation, Science China Chemistry 2024, 67, 3976–3993. (IF=9.8)

30.Y. Ding, J. Du, T. Wang, L. Sun*, Identifying the Active Site of Water Oxidation Catalyst Based on Defective Fe-Doped Ni Oxyhydroxide, CCS Chemistry 2024, 6, 365–376. (IF=9.2)

31.Z. Chen, T. Wang*, Toward High-Performance Electrochemical Ammonia Synthesis by Circumventing the Surface H-Mediated N2 Reduction, JACS Au 2024, 4, 4023–4031. (IF=8.7)

32.G. Xu, L. Sun, T. Wang*, Demagnetizing Ferromagnetic Catalysts to the Sabatier Optimal of Haber–Bosch Process, JACS Au 2024, 4, 1405–1412. (IF=8.7)

33.P. Li, K. Wang, B. Zhang*, Electrosynthesis of Amino Acids from Biomass and Nitrate at Industrial Current Densities Using Porous PbBi Electrodes, ACS Applied Materials & Interfaces 2024, 16, 57171–57179. (IF=8.2)

34.C. Han, T. Wang*, Understanding the catalytic performances of metal-doped Ta2O5 catalysts for acidic oxygen evolution reaction with computations, Chemical Science 2024, 15, 14371–14378. (IF=7.5)

35.Y. Chen, Y. Liu, G. Xu, T. Wang*, Diverse effects of ferromagnetic-paramagnetic phase transition on the activity and selectivity of ferromagnetic catalysts, Journal of Catalysis 2024, 439, 115749. (IF=6.5)

36.Y. Ding, Y. Li, L. Wang, B. Chai, Y. Jia, L. Sun*, K. Fan, * Reconstruction of Bi2S3 in CO2 Electroreduction via Topotactic Transformation, ACS Applied Energy Materials 2024, 7, 5418–5425. (IF=5.6)

37.Z. He, Y. Liu, T. Wang*, Identification of Ni3Fe alloy as a candidate catalyst for quinoline selective hydrogenation with computations, Catalysis Science & Technology 2024, 14, 7134–7139. (IF=4.3)

38.H. Lee, G. Ding, L. Wang, L. Sun*, A Chalcogenide‐Derived NiFe2O4 as Highly Efficient and Stable Anode for Anion Exchange Membrane Water Electrolysis, Chemistry – A European Journal 2024, 31, e202403198. (IF=3.7)

39.Y. Song, Z. Wei, W. Shi, B. Zhang*, Benchmarking commercial RuO2 for acidic water oxidation, Next Materials 2025, 6, 100289. (IF=3.35)

40.C. Liu, Y. Liu, G. Xu, T. Wang*, Associative-Distal Mechanism of the Haber–Bosch Process on a Ferrierite Catalyst with Spatially Isolated Dual Molybdenum Sites, The Journal of Physical Chemistry C 2024, 128, 6711–6718. (IF=3.2)