[1] H.A. Sun, X.M. Xu, K. Kim, W. Jung, W. Zhou, Z.P.Shao Energy Environ. Mater., 6(2023), e12441 [2] Y.T. Luo, Z.Y. Zhang, M. Chhowalla, B.L. Liu Adv. Mater., 34 (2022), Article 2108133 [3] X.Q. Wang, B. Wang, Y.F. Chen, M.Y. Wang, Q. Wu, K. Srinivas, B. Yu, X.J. Zhang, F. Ma, W.L.Zhang J. Mater. Sci. Technol., 105(2022), 266-273 [4] X.Q. Wang, B.J. Zheng, D.X. Yang, B.C. Sun, W.L. Zhang, Y.F. Chen Energy Technol., 7 (2019), Article 1801061 [5] X. Yang, Y.J. Ouyang, R.K. Guo, Z.F. Yao Chem. Rev., 23 (2022), Article e202200212 [6] X.P. Li, C. Huang, W.K. Han, T. Ouyang, Z.Q.Liu Chin. Chem. Lett., 32(2021), 2597-2616 [7] C.D. Yang, Y. Guo, T. Ma, M.R. Bai, C. He, X.C. Ren, X.L. Luo, C.Z. Wu, S. Li, C. Cheng Adv. Mater., 35 (2023), Article 2301836 [8] H. Lei, L. Ma, Q.X. Wan, Z.W. Huangfu, S.Z. Tan, Z.L. Wang, W.J. Mai Nano Energy, 104 (2022), Article 107941 [9] B. Liu, B.W. Yuan, C. Wang, S.J. You, J. Liu, X. Meng, X.Q. Xu, Z. Cai, J.H. Xie, J.L.Zou J. Colloid Interface Sci., 635(2023), 208-220 [10] Y. Pan, M.M. Wang, M. Li, G.X. Sun, Y.J. Chen, Y.Q. Liu, W. Zhu, B. Wang J.Energy Chem., 68(2022), 699-708 [11] A. Kundu, A. Samanta, C.R.Raj ACS Appl. Mater. Interfaces, 13(2021), 30486-30496 [12] J. Wang, P. Ganesan, A. Ishihara, N. Nakashima ChemCatChem, 11(2019), 5929-5944 [13] X. Wang, Z. Qin, J.J. Qian, L.Y. Chen, K. Shen ACS Catal., 13(2023), 10672-10682 [14] L.Q. Li, W. Gao, M. Lei, D. Wen Chem.Eur. J., 27(2021), 10966-10972 [15] C.C. Zhao, Y. Yang, Y.X. Liu, Z.X. Sun, T. Zhang, Z. Gao, F. Huo, Y.T. Zhang Appl. Surf. Sci., 644 (2024), Article 158736 [16] K.Z. Li, G.Q. Yuan, X.F. Liu, Y. Guo, R. Huang, H. Li, H.J. Zhang, Q.L. Jia, Z.W. Xie, S.W. Zhang, W. Lei Adv. Funct. Mater., 33 (2023), Article 2302348 [17] Q. Wang, Y.Z. Wu, N. Pan, C.Y. Yang, S. Wu, D.J. Li, S.A. Gu, G.W. Zhou, J.L. Chai Front. Chem., 10 (2022), Article 1052560 [18] M. Xu, Q.T. Xia, J.L. Yue, X.H. Zhu, Q.B. Guo, J.W. Zhu, H. Xia Adv. Funct. Mater., 29 (2019), Article 1807377 [19] Q. Quan, Y.X. Zhang, S.H. Li, S.P. Yip, W. Wang, P.S. Xie, D. Chen, W.J. Wang, D. Yin, Y.Z. Li, B.L. Liu, J.C.Ho ACS Nano, 18(2024), 1204-1213 [20] H.J. Huang, Y.J. Wei, Y. Yang, M.M. Yan, H.Y. He, Q.G. Jiang, X.F. Yang, J.X.Zhu J. Energy Chem., 57(2021), 601-609 [21] W.J. Liu, E. Kwon, B.X. Thanh, T.C. Khiem, D.D. Yuan, J.Y. Lin, T. Wi-Afedzi, C.C. Hu, S. Sirivithayapakorn, K.Y.A. Lin Sep. Sci. Technol., 295 (2022), Article 120945 [22] S.L. Zhang, X.F. Lu, Z.P. Wu, D.Y. Luan, X.W.Lou Angew. Chem. Int. Ed., 60(2021), 19068-19073 [23] Q.Q. Gui, Y.T. Feng, B.J. Chen, F. Gu, L. Chen, S. Meng, M.Z. Xu, M.T. Xia, C. Zhang, J.H. Yang Adv. Energy Mater., 11 (2021), Article 2003553 [24] M.F.R. Hanifah, J. Jaafar, M.H.D. Othman, A.F. Ismail, M.A. Rahman, N. Yusof, F. Aziz, W.N.W. Salleh, H. Ilbeygi Electrochim. Acta, 203 (2022), Article 139608 [25] M. Batool, A. Wariam, M.A.Nadeem Int. J.Hydrogen Energ., 48(2023), 18280-18290 [26] Y. Yang, H.Q. Yao, Z.H. Yu, S.M. Islam, H.Y. He, M.W. Yuan, Y.H. Yue, K. Xu, W.C. Hao, G.B. Sun, H.F. Li, S.L. Ma, P. Zapol, M.G.Kanatzidis J. Am. Chem. Soc., 141(2019), 10417-10430 [27] Y.R. Qi, Q.J. Li, Y.K. Wu, S.J. Bao, C.M. Li, Y.M. Chen, G.X. Wang, M.W.Xu Nat. Commun., 12(2021), 6347 [28] Y.Y. Zhuang, H. Cheng, C.F. Meng, B.Y. Chen, H. Zhou J.Colloid Interface Sci., 643(2023), 162-173 [29] K. Wu, X.N. Wei, D. Li, P. Hu J.Mater. Sci. Technol., 99(2022), 270-276 [30] T. Shen, X.X. Huang, S.B. Xi, W. Li, S.N. Sun, Y.L.Hou J. Energy Chem., 68(2022), 184-194 [31] M.X. Liu, Z.D. Liu, W.H. Chen, Z. Liu, Z.Y. Li, X.X. Pi, Q.J. Du, X.Y. Lai, Y.H.Li Inorg. Chem., 62(2023), 11199-11206 [32] C.W. Wan, J. Jin, X.Y. Wei, S.Z. Chen, Y. Zhang, T.L. Zhu, H.X.Qu J. Mater. Sci. Technol., 124(2022), 102-108 [33] Q.L. Kang, D.W. Lai, W.Y. Tang, Q.Y. Lu, F. Gao Chem.Sci., 12(2021), 3818-3835 [34] Z.L. Li, L.B. Deng, I.A. Kinloch, R.J. Young Prog. Mater. Sci., 135 (2023), Article 101089 [35] M.J. Wu, G.X. Zhang, Y.F. Hu, J. Wang, T.X. Sun, T. Regier, J.L. Qiao, S.H.Sun Carbon Energy, 3(2021), 176-187 [36] A. Kosimov, G. Yusibova, J. Aruväli, P. Paiste, M. Käärik, J. Leis, A. Kimas, V. Kisand, K. Smits, N. Kongi Green Chem., 24(2022), 305-314 [37] H. Cheng, H. Zhou, Y.Y. Zhuang, C.F. Meng, B.Y. Chen, J.F. Chen, A.H. Yuan Appl. Surf. Sci., 607 (2023), Article 154953 [38] H. Cheng, H. Zhou, Y.Y. Zhuang, B.Y. Chen, J.F. Chen, A.H. Yuan Electrochim. Acta, 416 (2022), Article 140284 [39] X. Xiao, X.H. Li, G.Q. Yu, J.X. Wang, G.C. Yan, Z.X. Wang, H.J. Guo J. Power Sources, 438 (2019), Article 227019 [40] R. Huang, Y.Z. Wen, H.S. Peng, B. Zhang Chin. J. Catal., 43(2022), 130-138 [41] C.H. Chuang, L.Y. Hsiao, M.H. Yeh, Y.C. Wang, S.C. Chang, L.D. Tsai, K.C.Ho ACS Appl. Energy Mater., 3(2020), 11752-11762 [42] S. Wang, F. Yuan, G.X. Yang, S.C. Luo, M. Chen, T.T. Fan, J.T. Ma Mol. Catal., 525 (2022), Article 112339 [43] H. Ren, Y. Pan, C.C. Sorrell, H. Du J.Mater. Chem. A, 8(2020), 3154-3159 [44] F.Z. He, Y.Q. Han, Y.C. Tong, M. Zhong, Q.Y. Wang, B.T. Su, Z.Q.Lei ACS Sustain. Chem. Eng., 10(2022), 6094-6105 [45] Y.Y. Li, Q.M. Zou, Z.J. Li, D. Xie, Y. Niu, J.Z. Zou, X.R. Zeng Appl. Surf. Sci., 572 (2022), Article 151286 [46] X. Zhao, P. Pachfule, S. Li, J. Simke, J. Schmidt, A. Thomas Angew.Chem. Int. Ed., 57(2018), 8921-8926 [47] Z. Zhang, Y. Qin, M. Dou, J. Ji, F. Wang Nano Energy, 30(2016), 426-433 [48] J. Ren, L. Chen, Y. Wang, W. Tian, L. Gao, Z. Yuan ACS Sustain. Chem. Eng., 8(2020), 223-237 [49] J.L. Chang, S.Q. Zang, D.P. Wu, Z.X. Lian, F. Xu, K. Jiang, Z.Y. Gao Electrochim. Acta, 389 (2021), Article 138785 |