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21. Wang, D-M.; Shan, H.-M.; She, L.-Q.; He, Y.-Q.; Wu, Y.; Tang, Y.; Xu, L.-P.*; Wang, P.*, Ligand-Enabled Ni-Catalysed Dicarbofunctionalisation of Alkene with Diverse Native Functional Groups. Nat. Commun., 2024, ASAP.

20. Shan, H.-M.; Wang, Q.; Sun, Z.-H.; Bu, Y.; Xu, L.-P.*A mechanistic study reveals the roles of the ligandand substrate in the Pd-catalyzed C–H bond hydroxylation of a carboxylic acid with molecular oxygen. Org. Chem. Front., 202411, 6135-6143.

19. Sun, Z.-H.; Wang, Q.; Xu, L.-P.*, Mechanism and Origins of Enantioselectivity in the Nickel-catalyzed Asymmetric Synthesis of Silicon-Stereogenic Benzosiloles. J. Org. Chem., 2024, 89, 5675-5682.

18. Mu, Y.; Dai, Y.; Ruiz, D. A.; Liu, L. L.; Xu, L.-P.*; Tung, C.-H.; Kong, L.*, Aromatic 1,4,2,3-Diazadiborole Featuring an Unsymmetrical B=B Entity: A Versatile Synthon for Unusual Boron Heterocycles. Angew. Chem. Int. Ed.202463, e202405905.

17.   Ge, F.-B.; Lu, C.-J.; Chen, X.; Yao, W.; An, M.; Jiang, Y.-K.; Xu, L.-P.*, Liu, R.-R.*, Enantioselective Nickel-Catalyzed Denitrogenativ Transannulation En Route to N-N Atropisomers. Angew. Chem. Int. Ed., 2024, 63, e202400441.

16.   Tian, D.; Li, Z.-C.; Sun, Z.-H.; He, Y.-P.; Xu, L.-P.*; Wu, H.*, Catalytic Enantioselective Biltz Synthesis. Angew. Chem. Int. Ed., 2023, e202313797. 

15.   Li, H.#; Li, N.#; Wu, J.; Yu, T.; Zhang, R.; Xu, L.-P.*; Wei, H.*, Rhodium-Catalyzed Intramolecular Nitrogen Atom Insertion into Arene Rings. J. Am. Chem. Soc. 2023, 145, 17570-17576. 

14.   Miao, Y.-H.#; Zhang, Z.-X.#; Huang, X.-Y.; Hua, Y.-Z.; Jia, S.-K.; Xiao, X.; Wang, M.-C.*; Xu, L.-P.*; Mei, G.-J.*. Catalytic asymmetric dearomative azo-Diels–Alder reaction of 2-vinlyindoles. Chin. Chem. Lett., 2023, 39, 108830. 

13. Mao, X.-R.; Wang, Q.; Zhuo, S.; Xu, L.-P.*, “Reactivity and Selectivity of the Diels Alder Reaction of Anthracene in [Pd6L4]12+ Supramolecular Cages: A Computational Study” Inorg. Chem202362, 4330-4340. (Journal Cover).

12.   Li, N.; Wang, Q.; Zhuo, S.; Xu, L.-P.*, “Mechanism and Origins of Selectivity in the Supramolecular [Ga4L6]12--catalyzed Aza-Prins Reaction: The Mechanistic Studies”, ACS Catal. 2023, 13, 10531-10540.

11.   Liu, T.#; Mao, X.-R.#; Song, S.#; Chen, Z.-Y.; Wu, Y.; Xu, L.-P.*; Wang, P. *, “Enantioselective Ni-Catalyzed Hydrosilylation of 1,1-Disubsituted Allenes”, Angew. Chem. Int. Ed., 2023, e202216878.

10.   Yang, Y.; Wang, H.; Sun, Z.; Li, X.; Sun, F.; Liu, Q.; Zhang, L.*; Xu, L.-P.*; Liu, H.*, “Palladium-Catalyzed Regiodivergent Arylamination/Arylcarbamoylation of Allenamide”, Org. Chem. Front., 2022, 9, 5969-5975.

9.   Han, T.-J.#; Zhang, Z.-X.#; Xiao, X.; Wang, M.-C.*; Xu, L.-P.*; Mei, G.-J.*, “The Rational Design and Atroposelective Synthesis of Axially Chiral NPNOLs”, Angew. Chem. Int. Ed. 2022, 61, e202207517 Link

8.   Xu, L.-P.; Qian, S.; Zhuang, Z.; Yu, J.-Q.*; Musaev, D. G.*, “Unconventional Mechanism and Selectivity of the Pd(II)-Catalyzed C–H Bond Lactonization in Aromatic Carboxylic Acid”, Nat. Commun. 2022, 13, 315. Link

7.   Xu, L.-P.; Roque, J. B.; Sarpong, R.*; Musaev, D. G.*, “Reactivity and Selectivity Controlling Factors in the Pd Dialkylbiarylphosphine Catalyzed C−C Cleavage/Cross-Coupling of an N‑Fused Bicyclo α‑Hydroxy-β-Lactam”, J. Am. Chem. Soc. 2020, 142, 21140-21152. Link

6.   Xu, L.-P.; Hilton, M. J.; Zhang, X.; Norrby, P.-O.*; Wu, Y.-D.*; Sigman, M. S.*; Wiest, O.*, "Mechanism, Reactivity, and Selectivity in Palladium-Catalyzed Redox-Relay Heck Arylations of Alkenyl Alcohols" J. Am. Chem. Soc.2014136, 1960-1967. Link

5.   Xu, L.-P.*; Zhuang, Z.; Qian, S.; Yu, J.-Q.*; Musaev, D. G.*, “Roles of Ligand and Oxidant in the Pd(II)-Catalyzed and Ligand-enabled C(sp3)–H Lactonization in Aliphatic Carboxylic Acid: The Mechanistic Studies”, ACS Catal. 2022, 12, 4848-4858. Link

4.   Xu, L.-P.; Haines, B. E.; Ajitha, M. J.; Yu, J.-Q.; Musaev, D. G.*, “Unified Mechanistic Concept of the Copper-Catalyzed and Amide-Oxazoline-Directed C(sp2)−H Bond Functionalization”, ACS Catal. 2021, 11, 12620-12631. Link

3.   Xu, L.-P.; Liu, E.; Bacsa, J.; MacBeth, C.*; Musaev, D. G.*, “Mechanistic details of the cobalt-mediated dehydrogenative dimerization of aminoquinolinedirected benzamides”, Chem. Sci. 2020, 11, 6085-6096. Link

2.   Xu, L.-P.; Haines, B.; Ajitha, M. J.; Murakami, K.; Itami, K.*; Musaev, D. G.*, "Roles of Base in the Pd-Catalyzed Annulative Chlorophenylene Dimerization" ACS Catal. 202010, 3059-3073. Link

1.   Xu, L.-P.; Chung, L. W.*; Wu, Y.-D., “Mechanism of Ni-NHC Catalyzed Hydrogenolysis of Aryl Ethers: The Roles of the Excess Base” ACS Catal. 20166, 483-493. Link