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成果及论文


At Anhui Polytechnic University (since 08/2022 )


(1) W. Su, T. Rajeshkumar, L. Xiang, L. Maron*, Q. Ye*, Facile Synthesis of Uranium Complexes with a Pendant Borane Lewis Acid and 1,2-Insertion of CO into a U−N BondAngew. Chem. Int. Ed. 2022, 61, e202212823.

(2)E. Castellanos, W. Su, S. Demir,  Introducing dibenzocyclooctatetraene into actinide chemistry: isolation of rare trivalent uranium sandwich complexes, Inorg. Chem. Front. 202512, 118–130

Graphical abstract: Introducing dibenzocyclooctatetraene into actinide chemistry: isolation of rare trivalent uranium sandwich complexes

(3) W. Su, etc, A cerium yldiide comlex bearing a Ce=C double dative bond. submitted.

(4) W. Su, etc, Advances in Heavy p-block element-uranium complex. submitted.

(5) W. Su, etc, Tethered borataalkene Cerium complexes. Preparing.

W. Su, etc, "Naked" carbon bridged molecular uranium carbide, U2C. Preparing.

W. Su, etc, Isolation of DMAP-stabilized Uranium Carbene ComplexPreparing.

Stay tuned for more ... ...


Prior to 2022:

(1) W. Su, S. Pan, X. Sun, S. Wang, L. Zhao*, G. Frenking*, C. Zhu*, Double dative bond between divalent carbon(0) and uraniumNat. Commun. 2018, 9: 4997.

(2) C. Zhang, J. Wang, W. Su, Z. Lin*, Q. Ye*, Synthesis, Characterization, and Density Functional Theory Studies of Three-Dimensional Inorganic Analogues of 9,10-Diboraanthracene—A New Class of Lewis Superacids, J. Am. Chem. Soc. 2021, 143, 8552.

(3) W. Fang, S, Pan, W. Su, S. Wang, L. Zhao*, G. Frenking*, C. Zhu*, Complex Featuring Two Double Dative Bonds Between Carbon(0) and Uranium, CCS Chem. 2021, 3. 2324–2332.

(4) W. Su, Y. Ma, L. Xiang, J. Wang, S. Wang, L. Zhao*, G. Frenking*, Q. Ye*, Isolation of a Uranium(III)–Carbon Multiple Bond ComplexChem.–Eur. J. 2021, 39, 10006.

(5) W. Su, S. Pan, X. Sun, L. Zhao*, G. Frenking*, C. Zhu*, Cerium-carbon dative interactions supported by carbodiphosphorane, Dalton Trans. 2019, 48, 16108.

(6) W. Su, K. Zhou, F. Cai, C. Chen, B. Mousavi, S. Chaemchuen, F. Verpoort*, Water oxidation by in-situ generated [RuII(OH2)(NCNHCO)(pic)2]+Chem. Asian J. 2017, 12, 2304.

(7) F. Cai#, W. Su#, H. A. Younus, K. Zhou, C. Chen, S. Chaemchuen, F.Verpoort*, Synthesis and characterization of [Ru(NCNHCO)(bpy)L]+ complexes and their reactivity towards water oxidationNew J. Chem., 2018, 42, 2476.(8) W. Su, H. A. Younus, S. Chaemchuen, C. Chen, F. Verpoort*, Chemical and Photochemical Water Oxidation by [RuCl(NCNHCO)(DMSO)(py)]-Type ComplexesChemCatChem, 2017, 9, 2565.

(9) W. Su, H. A. Younus, K. Zhou, Z. A. K. Khattak, S. Chaemcheun, C. Chen, F. Verpport*, Chemical and photochemical water oxidation catalyzed by novel ruthenium complexes comprising a negatively charged NCNHCO ligandCatal. Sci. Tech., 2017, 7, 387.

(10) H. A. Younus, N. Ahmad, W. Su, F. Verpoort*, Ruthenium pincer complexes: Ligand design and complex synthesis, Coord. Chem. Rev., 2014, 276, 112. 

(11)  H. A. Younus, W. Su, N. Ahmad, S. Chen, F. Verpoort*, Ruthenium Pincer Complexes: Synthesis and Catalytic Applications, Adv. Syn. Tech., 2015, 357, 283.