[1] T.R. Cook, D.K. Dogutan, S.Y. Reece, Y. Surendranath, T.S. Teets, D.G. Nocera, Chem. Rev. 110(2010) 6474-6502. [2] S. Wolf, T.F. Keenan, J.B. Fisher, D.D. Baldocchi, A.R. Desai, A.D. Richardson, R.L. Scott, B.E. Law, M.E. Litvak, N.A. Brunsell, W. Peters, I.T. van der Laan-Luijkx, Proc.Natl. Acad. Sci. 113(2016) 5880-5885. [3] N.T. Suen, S.F. Hung, Q. Quan, N. Zhang, Y.J. Xu, H.M. Chen, Chem. Soc. Rev. 46(2017) 337-365. [4] Z.W. Seh, J. Kibsgaard, C.F. Dickens, I. Chorkendorff, J.K. Nørskov, T.F. Jaramillo, Science 355 (2017) eaad4998. [5] J. Xu, Z. Lian, B. Wei, Y. Li, O. Bondarchuk, N. Zhang, Z. Yu, A. Araujo, I. Amorim, Z. Wang, B. Li, L. Liu, ACS Catal. 10(2020) 3571-3579. [6] R. Li, X.J. Liu, W.H. Liu, Z.B. Li, K.C. Chan, Z.P. Lu, Adv. Sci. 9(2022) 2105808. [7] R. Gao, D. Yan, Adv. Energy Mater. 10(2020) 1900954. [8] X.Y. Zhang, Y.Y. Yang, Y.J. Liu, Z. Jia, Q.Q. Wang, L.G. Sun, L.C. Zhang, J.J. Kruzic, J. Lu, B.L. Shen, Adv. Mater. 35(2023) 2303439. [9] H.M. Xu, K.H. Yue, L.J. Song, H.C. Zhang, H.R. Zhu, Z.J. Zhang, G.R. Li, Angew. Chem. Int. Ed. 63(2024) e202412025. [10] S.C. Xu, C.C. Lv, T. He, Z.P. Huang, C. Zhang, J. Mater. Chem. A 7 (2019) 7526-7532. [11] G. Wu, X. Zheng, P. Cui, H. Jiang, X. Wang, Y. Qu, W. Chen, Y. Lin, H. Li, X. Han, Y. Hu, P. Liu, Q. Zhang, J. Ge, Y. Yao, R. Sun, Y. Wu, L. Gu, X. Hong, Y. Li, Nat. Commun. 10(2019) 4855. [12] Z.Q. Su, C. Zhang, J. Liu, C.H. Liang, J. Electroanal. Chem. 960(2024) 118182. [13] Y. Duan, Z.Y. Yu, S.J. Hu, X.S. Zheng, C.T. Zhang, H.H. Ding, B.C. Hu, Q.Q. Fu, Z.L. Yu, X. Zheng, J.F. Zhu, M.R. Gao, S.H. Yu, Angew. Chem. Int. Ed. 58(2019) 15772-15777. [14] Z. Wang, B.A. Sun, H.Y. Bai, W.H. Wang, Nat. Commun. 5(2014) 5823. [15] L. Gao, H.B. Yu, T.B. Schrøder, J.C. Dyre, Nat. Phys. 21(2025) 471-479. [16] S. Lan, Y. Ren, X.Y. Wei, B. Wang, E.P. Gilbert, T. Shibayama, S. Watanabe, M. Ohnuma, X.L. Wang, Nat. Commun. 8(2017) 14679. [17] J. Ge, Y. Gu, Z. Yao, S. Liu, H. Ying, C. Lu, Z. Wu, Y. Ren, J.I. Suzuki, Z. Xie, Y. Ke, J. Zeng, H. Zhu, S. Tang, X.L. Wang, S. Lan, J. Mater. Sci.Technol. 176(2024) 224-235. [18] S.F. Sun, X. Zhou, B.W. Cong, W.Z. Hong, G. Chen, ACS Catal. 10(2020) 9086-9097. [19] X. Ge, P. Lai, C. Shi, X. Xu, J. Wang, T. Du, M.M. Smedskjær, D. Yang, F. Yang, W. Lu, J. Qin, J. Li, Q. Hu, Acta Mater. 253(2023) 118953. [20] Q. Yang, X.M. Yang, T. Zhang, X.W. Liu, H.B. Yu, Acta Mater. 266(2024) 119701. [21] L.Z. Zhao, Y.Z. Li, R.J. Xue, W.H. Wang, H.Y. Bai, J. Appl. Phys. 118(2015) 154904. [22] Z. Lu, W. Jiao, W.H. Wang, H.Y. Bai, Phys. Rev. Lett. 113(2014) 045501. [23] H.B. Yu, K. Samwer, W.H. Wang, H.Y. Bai, Nat. Commun. 4(2013) 2204. [24] R. Li, R.Y. Wu, Z.B. Li, J. Wang, X.J. Liu, Y.R. Wen, F.K. Chiang, S.W. Chen, K.C. Chan, Z.P. Lu, Adv. Mater. 35(2022) 2206890. [25] S. Sun, X. Jin, B. Cong, X. Zhou, W. Hong, G. Chen, J. Catal. 379(2019) 1-9. [26] J.C. Qiao, Q. Wang, J.M. Pelletier, H. Kato, R. Casalini, D. Crespo, E. Pineda, Y. Yao, Y. Yang, Prog. Mater. Sci. 104(2019) 250-329. [27] C. Tang, N. Zhang, Y. Ji, Q. Shao, Y. Li, X. Xiao, X. Huang, Nano Lett. 19(2019) 1336-1342. [28] R. Zhang, Y. Guo, S. Zhang, D. Chen, Y. Zhao, Z. Huang, L. Ma, P. Li, Q. Yang, G. Liang, C. Zhi, Adv. Energy Mater. 12(2022) 2103872. [29] A.K. Sasmal, S. Dutta, T. Pal, Dalton Trans. 45(2016) 3139-3150. [30] Y. Liu, Z. Zhang, L. Zhang, Y. Xia, H. Wang, H. Liu, S. Ge, J. Yu, J. Mater. Chem. A 10 (2022) 22125-22134. [31] V.R. Stamenkovic, B. Fowler, B.S. Mun, G.F. Wang, P.N. Ross, C.A. Lucas, N.M. Markovic, Science 315 (2007) 493-497. [32] J.K. Nørskov, F. Abild-Pedersen, F. Studt, T. Bligaard, Proc. Natl. Acad. Sci. 108(2011) 937-943. [33] J.K. Nørskov, F. Studt, F. Abild-Pedersen, T. Bligaard, in: Fundamental Concepts in Heterogeneous Catalysis, first ed., John Wiley & Sons, Inc., Hoboken, New Jersey, 2014, pp. 114-137. [34] M. Retuerto, L. Pascual, F. Calle-Vallejo, P. Ferrer, D. Gianolio, A.G. Pereira, Á. García, J. Torrero, M.T.Fernández-Díaz, P.Bencok, M.A. Peña, J.L.G. Fierro, S. Rojas, Nat. Commun. 10(2019) 2041. [35] Y. Sun, B. Huang, Y. Li, Y. Xing, M. Luo, N. Li, Z. Xia, Y. Qin, D. Su, L. Wang, S. Guo, Chem. Mater. 31(2019) 8136-8144. [36] Y. Yao, S. Hu, W. Chen, Z.Q. Huang, W. Wei, T. Yao, R. Liu, K. Zang, X. Wang, G. Wu, W. Yuan, T. Yuan, B. Zhu, W. Liu, Z. Li, D. He, Z. Xue, Y. Wang, X. Zheng, J. Dong, C.R. Chang, Y. Chen, X. Hong, J. Luo, S. Wei, W.X. Li, P. Strasser, Y. Wu, Y. Li, Nat. Catal. 2(2019) 304-313. [37] T. Bligaard, J.K. Nørskov, S. Dahl, J. Matthiesen, C.H. Christensen, J. Sehested, J. Catal. 224(2004) 206-217. [38] M. Luo, S. Guo, Nat. Rev. Mater. 2(2017) 17059. [39] Q. Song, J. Li, S. Wang, J. Liu, X. Liu, L. Pang, H. Li, H. Liu, Small 15 (2019) 1903395. [40] S. Lan, L. Zhu, Z. Wu, L. Gu, Q. Zhang, H. Kong, J. Liu, R. Song, S. Liu, G. Sha, Y. Wang, Q. Liu, W. Liu, P. Wang, C.T. Liu, Y. Ren, X.L. Wang, Nat. Mater. 20(2021) 1347-1352. [41] H.W. Sheng, W.K. Luo, F.M. Alamgir, J.M. Bai, E. Ma, Nature 439 (2006) 419-425. [42] D.B. Miracle, Nat. Mater. 3(2004) 697-702. [43] Y.Q. Cheng, E. Ma, Prog. Mater. Sci. 56(2011) 379-473. [44] R. Jiang, Y. Da, Z. Chen, X. Cui, X. Han, H. Ke, Y. Liu, Y. Chen, Y. Deng, W. Hu, Adv. Energy Mater. 12(2022) 2101092. [45] J.W. Zhao, K. Yue, H. Zhang, S.Y. Wei, J. Zhu, D. Wang, J. Chen, V.Y. Fominski, G.R. Li, Nat. Commun. 15(2024) 2928. [46] J.W. Zhao, H. Zhang, C.F. Li, X. Zhou, J.Q. Wu, F. Zeng, J. Zhang, G.R. Li, Energy Environ. Sci. 15(2022) 3912-3922. [47] Y. Du, X. He, C. Yan, Q. Hu, J. Zhang, F. Yang, J. Mater. Chem. A 13 (2025) 7962-7972. [48] J.W. Zhao, C.F. Li, Z.X. Shi, J.L. Guan, G.R. Li, Research 2020 (2020) 6961578. [49] M. Han, C. Wang, J. Zhong, J. Han, N. Wang, A. Seifitokaldani, Y. Yu, Y. Liu, X. Sun, A. Vomiero, H. Liang, App. Catal. B-Environ. 301(2022) 120764. [50] M.W. Louie, A.T. Bell, J. Am. Chem.Soc. 135(2013) 12329-12337. [51] R. Chen, Y. Yang, W. Wu, S. Chen, Z. Wang, Y. Zhu, N. Cheng, Chem. Eng. J. 480(2024) 148100. |