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      发表文章
      2020年发表文章
         日期:2020-01-01  

      1. Sun, C.; Liu, Z. Q.; Wang, S.; Pang, H.; Bai, R. S.; Wang, Q. F.; Chen, W.; Zheng, A. M.*; Yan, W. F.*; Yu, J. H.*, “Anion tuning of zeolite crystallization”, CCS Chemistry, 2020, DOI: 10.31635/ccschem.020.202000558.

      2. Sun, Q. M.; Chen, B. W. J.; Wang, N.; He, Q.; Chang, A.; Yang, C.-M.; Asakura, H.; Tanaka, T.; Hülsey, M. J.; Wang, C.-H.; Yu, J. H.*; Yan, N.*, “Zeolite-encaged Pd-Mn nanocatalysts for CO2 hydrogenation and formic acid dehydrogenation”, Angewandte Chemie International Edition, 59(2020), 20183-20191.

      3. Li, M. L.; Wang, X. X.; Li, F.; Zheng, L. J.; Xu, J. J.*; Yu, J. H.*, “A bifunctional photo-assisted Li-O2 battery based on a hierarchical heterostructured cathode”, Advanced Materials, 2020, 1907098.

      4. Wang, J. Y.; Liu, P. S.; Boronat, M.*; Ferri, P.; Xu, Z. G.; Liu, P.; Shen, B. J.; Wang, Z. D.; Yu, J. H.*, “Organic-free synthesis of high silica zeolite Y via a combined strategy of in situ hydroxyl radical assistance and post-synthesis treatment”, Angewandte Chemie International Edition, 59(2020), 17225-17228.

      5. Sun, Q. M.; Wang, N.; Xu, Q.; Yu, J. H.*, “Nanopore-supported metal nanocatalysts for efficient hydrogen generation from liquid-phase chemical hydrogen storage materials”, Advanced Materials, 32(2020), 2001818.

      6. Zhang, Q.; Yu, J. H.*; Corma, A.*, “Applications of zeolites to C1 chemistry: recent advances, challenges, and opportunities”, Advanced Materials, 32(2020), 2002927.

      7. Yu, J. H.*; Corma, A.*; Li, Y.*, “Functional porous materials chemistry”, Advanced Materials, 32(2020), 2006277.

      8. Qiao, G.-Y.; Yuan, S.; Pang, J. D.; Rao, H.; Lollar, C. T.; Dang, D. B.; Qin, J.-S.*; Zhou, H.-C.*; Yu, J. H.*, “Functionalization of zirconium-based metal-organic layers with tailored pore environments for heterogeneous catalysis”, Angewandte Chemie International Edition, 59(2020), 18224-18228.

      9. Zhang, H. Y.; Wang, B. L.; Yu, X. W.; Li, J. Y.*; Shang, J.; Yu, J. H.*, “Carbon dots in porous materials: host-guest synergy for enhanced performance”, Angewandte Chemie International Edition, 59(2020), 19390-19402.

      10. Bao, S. X.; Li, J. Y.; Guan, B. Y.; Jia, M. J.* Terasaki, O.; Yu, J. H.*, “A green selective water etching approach to metal-organic framework@mesoporous SiO2 yolk-shell nanoreactors with enhanced catalytic stabilities”, Matter, 3(2020), 498-508.

      11. Bai, P.; Dong, Z. Y.; Wang, S.; Wang, X. Y.; Li, Y.; Wang, Y. Z.; Ma, Y. H.; Yan, W. F.*; Zou, X. D.; Yu, J. H.*, “A layered cationic aluminum oxyhydroxide emerging as a new type of highly efficient and selective trap for heavy metal oxyanions”, Angewandte Chemie International Edition, 59(2020), 19539-19544.

      12. Sun, Q. M.; Wang, N.; Fan, Q. Y.; Zeng, L.; Mayoral, A.; Miao, S.; Yang, R. O.; Jiang, Z.; Zhou, W.; Zhang, J. C.; Zhang, T. J.; Xu, J.; Zhang, P.; Cheng, J.;  Yang, D. -C.; Jia, R.; Li, L.; Zhang, Q. H.; Wang, Y.*; Terasaki, O.; Yu, J. H.*, “Subnanometer bimetallic Pt-Zn clusters in zeolites for propane dehydrogenation”, Angewandte Chemie International Edition, 59(2020), 19450-19459.

      13. Zhang, H. Y.; Liu, K. K.; Liu, J. C.; Wang, B. L.; Li, C. Y.; Song, W.; Li, J. Y.*; Huang, L.; Yu, J. H.*, “Carbon dots-in-zeolite via in-situ solvent-free thermal crystallization: achieving high-efficiency and ultralong afterglow dual emission”, CCS Chemistry, 2(2020), 2280-2297.

      14. Di, J. C.; Li, L.; Wang, Q. F.; Yu, J. H.*, “Porous membranes with special wettabilities: designed fabrication and emerging application”, CCS Chemistry, 2(2020), 118-127.

      15. Xu, W. J.; Zhang, T. J.; Bai, R. S.; Zhang, P.; Yu, J. H.*, “A one-step rapid synthesis of TS-1 zeolites with highly catalytically active mononuclear TiO6 species”, Journal of Materials Chemistry A, 8(2020), 9677-9683.

      16. Zhang, Q.; Xiang, S.; Zhang, Q.; Wang, B. J.; Mayoral, A.; Liu, W. Y.; Wang, Y. Y.; Liu, Y. H.; Shi, J.; Yang, G. J.; Luo, J.; Chen, X. S.*; Terasaki, O.; Gilson, J. -P.; Yu, J. H.*, “Breaking the Si/Al limit of nanosized β zeolites: promoting catalytic production of lactide”, Chemistry of Materials, 32(2020), 751-758.

      17. Wang, B. X.; Wang, Q. F.; Di, J. C.*; Yu, J. H.*, “Zeolite-coated anti-biofouling mesh film for efficient oil-water separation”,Acta Physico-Chimica Sinica,36(2020), 1906044.

      18. She, P.; Qin, J.-S.; Rao, H.; Guan, B. Y.; Yu, J. H.*, “Spatially separated bimetallic cocatalysts over hollow-structured TiO2 for photocatalytic hydrogen generation”,Materials Chemistry Frontiers, 2020, DOI: 10.1039/D0QM00042F.

      19. Li, J. Y.; Zhang, C. Q.; Jiang, J. X.; Yu, J. H.*; Terasaki, O.; Mayoral, A.*, “Structure solution and defect analysis of extra-large pore zeolite with UTL topology by electron microscopy”,The Journal of Physical Chemistry Letters, 2020, DOI: 10.1021/acs.jpclett.0c00551.

      20. Song, Y.; Bai, R. S.; Zou, Y. C; Feng, Z. C.; Yu, J. H.*, “Temperature-regulated construction of hierarchical titanosilicate zeolites”,Inorganic Chemistry Frontiers, 2020, DOI: 10.1039/d0qi00120a.





       



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