| [1] | S. P. Roche, J. A. Porco Jr, Angew. Chem. Int. Ed., 2011, 50, 4068-4093. | | [2] | C. J. Huck, D. Sarlah, Chem, 2020, 6, 1589-1603. | | [3] | C.-X. Zhuo, C. Zheng, S.-L. You, Acc. Chem. Res., 2014, 47, 2558-2573. | | [4] | M. Randić, Chem. Rev., 2003, 103, 3449-3606. | | [5] | C.-X. Zhuo, W. Zhang, S.-L. You, Angew. Chem. Int. Ed., 2012, 51, 12662-12686. | | [6] | C. Zheng, S.-L. You, ACS Cent. Sci., 2021, 7, 432-444. | | [7] | A. R. Pape, K. P. Kaliappan E. P. Kündig, Chem. Rev., 2000, 100, 2917-2940. | | [8] | W. C. Wertjes, E. H. Southgate D. Sarlah, Chem. Soc. Rev., 2018, 47, 7996-8017. | | [9] | N. Kratena, B. Marinic, T. J. Donohoe, Chem. Sci., 2022, 13, 14213-14225. | | [10] | Y. Zhang, M. Li, Z. Wei, W. Ma, L. Ma, Z. Lei, Z. Zhou, Z. Wang, W. Wang, K. Liu, Green Synth. Catal., 2025, https://doi.org/10.1016/j.gresc.2025.06.009. | | [11] | M. J. James, J. L. Schwarz F,. Strieth-Kalthoff B,. Wibbeling F. Glorius, J. Am. Chem. Soc., 2018, 140, 8624-8628. | | [12] | J. Ma S,. Chen P,. Bellotti R,. Guo F,. Schäfer A,. Heusler X,. Zhang C,. Daniliuc M. K., Brown K. N., Houk F. Glorius, Science, 2021, 371, 1338-1345. | | [13] | J. Ma S,. Chen P,. Bellotti T,. Wagener C,. Daniliuc K. N., Houk F. Glorius, Nat. Catal., 2022, 5, 405-413. | | [14] | R. Kleinmans, S. Dutta, K. Ozols, H. Shao, F. Schäfer, R. E. Thielemann, H. T. Chan, C. G. Daniliuc, K. N. Houk, F. Glorius, J. Am. Chem. Soc., 2023, 145, 12324-12332. | | [15] | M. Zhu C,. Zheng X,. Zhang S.-L. You, J. Am. Chem. Soc., 2019, 141, 2636-2644. | | [16] | M. Zhu H,. Xu X,. Zhang C,. Zheng S.-L. You, Angew. Chem. Int. Ed., 2021, 60, 7036-7040. | | [17] | M. Zhu X,. Zhang C,. Zheng S.-L. You, Acc. Chem. Res., 2022, 55, 2510-2525. | | [18] | M. Zhu X,. Zhang C,. Zheng S.-L. You, ACS Catal., 2020, 10, 12618-12626. | | [19] | Y.-Z. Cheng, Q.-R. Zhao, X. Zhang, S.-L. You, Angew. Chem. Int. Ed., 2019, 58, 18069-18074. | | [20] | W. Wang, Y. Cai, R. Guo, M. K. Brown, Chem. Sci., 2022, 13, 13582-13587. | | [21] | M. S. Oderinde, E. Mao A,. Ramirez J,. Pawluczyk C,. Jorge L. A. M., Cornelius J,. Kempson M,. Vetrichelvan M,. Pitchai A,. Gupta A. K., Gupta N. A., Meanwell A,. Mathur T. G., Murali Dhar, J. Am. Chem. Soc., 2020, 142, 3094-3103. | | [22] | Z. Zhang, D. Yi, M. Zhang, J. Wei, J. Lu, L. Yang, J. Wang, N. Hao, X. Pan, S. Zhang, S. Wei, Q. Fu, ACS Catal., 2020, 10, 10149-10156. | | [23] | A. B. Rolka, B. Koenig, Org. Lett., 2020, 22, 5035-5040. | | [24] | P. Rai K,. Maji S. K., Jana B. Maji, Chem. Sci., 2022, 13, 12503-12510. | | [25] | K. Ikeda, R. Kojima, K. Kawai, T. Murakami, T. Kikuchi, M. Kojima, T. Yoshino, S. Matsunaga, J. Am. Chem. Soc., 2023, 145, 9326-9333. | | [26] | L. Hou L,. Yang G,. Yang Z,. Luo W,. Xiao L,. Yang F,. Wang L.-Z., Gong X,. Liu W,. Cao X. Feng, J. Am. Chem. Soc., 2024, 146, 23457-23466. | | [27] | M. S. Oderinde, S. Jin T. G. M., Dhar N. A., Meanwell A,. Mathur J. Kempson, Tetrahedron, 2022, 103, 132087. | | [28] | E. H. Southgate, J. Pospech J,. Fu D. R., Holycross D. Sarlah, Nat. Chem., 2016, 8, 922-928. | | [29] | C. Tang, M. Okumura, Y. Zhu, A. R. Hooper, Y. Zhou, Y.-H. Lee, D. Sarlah, Angew. Chem. Int. Ed., 2019, 58, 10245-10249. | | [30] | Z. Siddiqi, W. C. Wertjes, D. Sarlah, J. Am. Chem. Soc., 2020, 142, 10125-10131. | | [31] | P. Piacentini, T. W. Bingham, D. Sarlah, Angew. Chem. Int. Ed., 2022, 61, e202208014. | | [32] | J. Ma F,. Strieth-Kalthoff T,. Dalton M,. Freitag J. L., Schwarz K,. Bergander C,. Daniliuc F. Glorius, Chem, 2019, 5, 2854-2864. | | [33] | X. Wang, F. Liu, T. Xu, Chin. Chem. Lett., 2023, 34, 107624. | | [34] | M. Chiminelli, A. Serafino, D. Ruggeri, L. Marchiò, F. Bigi, R. Maggi, M. Malacria, G. Maestri, Angew. Chem. Int. Ed., 2023, 62, e202216817. | | [35] | K. Kishikawa, S. Akimoto, S. Kohmoto, M. Yamamoto, K. Yamada, J. Chem. Soc., erkin Trans. 1, 1997, 77-84. | | [36] | G. Zhen, G. Zeng, F. Wang, X. Cao, B. Yin, Adv. Synth. Catal., 2023, 365, 43-52. | | [37] | Y. Zhang, Y. Guo, Y. Zhang, S. Liu, X. Shen, Chem Catal., 2025, 5, 101200. | | [38] | R. Remy, C. G. Bochet, Chem. Rev., 2016, 116, 9816-9849. | | [39] | C. Müller, A. Bauer, T. Bach, Angew. Chem. Int. Ed., 2009, 48, 6640-6642. | | [40] | R. Brimioulle, T. Bach, Science, 2013, 342, 840-843. | | [41] | T. R. Blum, Z. D. Miller D. M., Bates I. A., Guzei T. P. Yoon, Science, 2016, 354, 1391-1395. | | [42] | X. Huang, T. R. Quinn, K. Harms, R. D. Webster, L. Zhang, O. Wiest, E. Meggers, J. Am. Chem. Soc., 2017, 139, 9120-9123. | | [43] | T. Rigotti, R. Mas-Ballesté, J. Alemán, ACS Catal., 2020, 10, 5335-5346. | | [44] | J. S. Trimble, R. Crawshaw F. J., Hardy C. W., Levy M. J. B., Brown D. E., Fuerst D. J., Heyes R,. Obexer A. P. Green, Nature, 2022, 611, 709-714. | | [45] | S. Das C,. Zhu D,. Demirbas E,. Bill C. K., De B. List, Science, 2023, 379, 494-499. | | [46] | X. Yang, J. Huang, J. Guo, S. Fang, Z. Wang, G. Wu, Y. Wu, F. Zhong, Chem. Soc. Rev., 2025, 54, 5157-5188. | | [47] | N. Hu H,. Jung Y,. Zheng J,. Lee L,. Zhang Z,. Ullah X,. Xie K,. Harms M.-H., Baik E. Meggers, Angew. Chem. Int. Ed., 2018, 57, 6242-6246. | | [48] | S. Stegbauer, C. Jandl, T. Bach, Angew. Chem. Int. Ed., 2018, 57, 14593-14596. | | [49] | P. Yan S,. Stegbauer Q,. Wu E,. Kolodzeiski C. J., Stein P,. Lu T. Bach, Angew. Chem. Int. Ed., 2024, 63, e202318126. | | [50] | N. Sun J,. Huang J,. Qian T.-P., Zhou J,. Guo L,. Tang W,. Zhang Y,. Deng W,. Zhao G,. Wu R.-Z., Liao X,. Chen F,. Zhong Y. Wu, Nature, 2022, 611, 715-720. | | [51] | D. Tian, W. Shi, X. Sun, X. Zhao, Y. Yin, Z. Jiang, Nat. Commun., 2024, 15, 4563. | | [52] | J. Wang, Q. Fu, S. Cao, X. Lv, Y. Yin, X. Ban, X. Zhao, Z. Jiang, J. Am. Chem. Soc., 2024, 146, 22840-22849. | | [53] | M. Li X.-L., Huang Z.-Y., Zhang Z,. Wang Z,. Wu H,. Yang W.-J., Shen Y.-Z., Cheng S.-L. You, J. Am. Chem. Soc., 2024, 146, 16982-16989. | | [54] | W.-J. Shen, X.-X. Zou, M. Li, Y.-Z. Cheng, S.-L. You, J. Am. Chem. Soc., 2025, 147, 11667-11674. | | [55] | R. Ham C. J., Nielsen S,. Pullen J. N. H. Reek, Chem. Rev., 2023, 123, 5225-5261. | | [56] | Y. Nishioka, T. Yamaguchi, M. Kawano, M. Fujita, J. Am. Chem. Soc., 2008, 130, 8160-8161. | | [57] | M. Alagesan, K. Kanagaraj, S. Wan, H. Sun, D. Su, Z. Zhong, D. Zhou, W. Wu, G. Gao, H. Zhang, C. Yang, J. Photochem. Photobiol. A, 2016, 331, 95-101. | | [58] | J. Guo Y.-Z., Fan Y.-L., Lu S.-P., Zheng C.-Y. Su, Angew. Chem. Int. Ed., 2020, 59, 8661-8669. | | [59] | K. Wu K,. Li Y.-J., Hou M,. Pan L.-Y., Zhang L,. Chen C.-Y. Su, Nat. Commun., 2016, 7, 10487. | | [60] | J.-S. Wang, K. Wu, C. Yin, K. Li, Y. Huang, J. Ruan, X. Feng, P. Hu, C.-Y. Su, Nat. Commun., 2020, 11, 4675. | | [61] | J. Ruan, Z. Li, C. Yin, Y.-L. Lu, Z.-W. Wei, P. Hu, C.-Y. Su, ACS Catal., 2024, 14, 7321-7331. | | [62] | J. Ruan, Y.-L. Lu, P. Hu, C.-Y. Su, J. Am. Chem. Soc., 2025, 147, 10475-10484. | | [63] | Deposition numbers 2361738 (for 10), 2361739 (for 11) and 2361740 (for 30) contain the supplementary crystallographic data for this paper. These data are provided free of charge by the joint Cambridge Crystallographic Data Centre and Fachinformationszentrum Karlsruhe Access Structures service. | | [64] | Y.-H. Huang, Y.-L. Lu, J. Ruan, S.-P. Zheng, X.-D. Zhang, C.-H. Liu, Y.-H. Qin, Z.-M. Cao, Z. Jiao, H.-S. Xu, C.-Y. Su, J. Am. Chem. Soc., 2023, 145, 23361-23371. |
|