J. Mater. Sci. Technol. ›› 2024, Vol. 195: 218-226.DOI: 10.1016/j.jmst.2024.02.011
• Research Article • Previous Articles Next Articles
Shuo Jin, Kailiang Ren*, Jin Liang, Jie Kong*
Received:
2024-02-05
Revised:
2024-02-24
Accepted:
2024-02-25
Published:
2024-10-01
Online:
2024-03-08
Contact:
*E-mail addresses: renkailiang@nwpu.edu.cn (K. Ren), kongjie@nwpu.edu.cn (J. Kong)
Shuo Jin, Kailiang Ren, Jin Liang, Jie Kong. A novel sheet perovskite type oxides LaFeO3 anode for nickel-metal hydride batteries[J]. J. Mater. Sci. Technol., 2024, 195: 218-226.
[1] P.M.B.Abrasaldo, S.J. Zarrouk, A.W. Kempa-Liehr, Renew.Sustain. Energy Rev. 189 (2024) 113998-114018. [2] L. Bird, D. Lew, M. Milligan, E.M. Carlini, A. Estanqueiro, D. Flynn, E. Gomez-Lazaro, H. Holttinen, N. Menemenlis, A. Orths, P.B. Eriksen, J.C. Smith, L. Soder, P. Sorensen, A. Altiparmakis, Y. Yasuda, J. Miller, Renew. Sustain. En-ergy Rev. 65 (2016) 577-586. [3] A. Jahanbakhsh, A.Louis Potapov-Crighton, A. Mosallanezhad, N. Tohidi Kaloorazi, M.M. Maroto-Valer, Renew. Sustain. Energy Rev. 189 (2024) 114001-114028. [4] J. Wang, W. Zeng, J. Zhu, F. Xia, H. Zhao, W. Tian, T. Wang, Y. Zhang, S. Zhang, S. Mu, Nano Energy 116 (2023) 108822-108831. [5] J.F. Mercure, P. Salas, P. Vercoulen, G. Semieniuk, A. Lam, H. Pollitt, P.B. Holden, N. Vakilifard, U. Chewpreecha, N.R. Edwards, J.E. Vinuales, Nat. Energy 6 (2021) 1133-1143. [6] F. Degen, M. Winter, D. Bendig, J. Tübke, Nat. Energy 8 (2023) 1284-1295. [7] T.M. Gür, Energy Environ. Sci. 11 (2018) 2696-2767. [8] H. Zhang, Y. Gao, X. Liu, L. Zhou, J. Li, Y. Xiao, J. Peng, J. Wang, S.L. Chou, Adv. Energy Mater. 13 (2023) 2300149-2300183. [9] G. Sadeghi, Energy Storage Mater. 46 (2022) 192-222. [10] X. Fan, B. Liu, J. Liu, J. Ding, X. Han, Y. Deng, X. Lv, Y. Xie, B. Chen, W. Hu, C. Zhong, Trans. Tianjin Univ. 26 (2020) 92-103. [11] X. Zeng, M. Li, D. Abd El-Hady, W. Alshitari, A.S. Al-Bogami, J. Lu, K. Amine, Adv. Energy Mater. 9 (2019) 1900161-1900186. [12] A. Malhotra, B. Battke, M. Beuse, A. Stephan, T.S. Schmdit, Renew. Sustain. En-ergy Rev. 56 (2016) 705-721. [13] M. Abdelbaky, J.R. Peeters, W. Dewulf, Waste Manag. 125 (2021) 1-9. [14] Y. Dong, S. Deng, Z. Ma, G. Yin, C. Li, X. Yuan, H. Tan, J. Pan, L. Mai, F. Xia, J. Mater. Sci.Technol. 121 (2022) 80-92. [15] Y. Liu, Y. Shi, X. Xu, Energy Storage Mater. 41 (2021) 677-696. [16] M.A. Hannan, S.M. Abu, A.Q. Al-Shetwi, M. Mansor, M.N.M. Ansari, K.M. Mut-taqi, Z.Y. Dong, Int. J. Hydrog. Energy 47 (2022) 39523-39548. [17] T.S. Mathis, N. Kurra, X. Wang, D. Pinto, P. Simon, Y. Gogotsi, Adv. Energy Mater. 9 (2019) 1902007-1902020. [18] L. Zhang, X. Hu, Z. Wang, J. Ruan, C. Ma, Z. Song, D.G. Dorrell, M.G. Pecht, Renew. Sustain. Energy Rev. 139 (2021) 110581-110591. [19] S.J.R.Vargas, N. Schaeffer, J.C. Souza, L.H.M. da Silva, M.C. Hespanhol, Waste Manag. 125 (2021) 154-162. [20] P. Edalati, A. Mohammadi, Y. Li, H.W. Li, R. Floriano, M. Fuji, K. Edalati, Scr. Mater. 209 (2022) 114387. [21] L. Cassayre, B. Guzhov, M. Zielinski, B. Biscans, Renew. Sustain. Energy Rev. 170 (2022) 112983. [22] A. St-Jean, Y. Barguil, Y. Dominique, B. Le Bot, P. Ayotte, S. Cordier, Environ. Int. 118 (2018) 106-115. [23] M. Assefi, S. Maroufi, Y. Yamauchi, V. Sahajwalla, Curr. Opin. Green Sustain.Chem. 24 (2020) 26-31. [24] Y. Li, Z. Liu, G. Zhang, Y. Zhang, H. Ren, J. Power Sources 441 (2019) 126667. [25] M. Nikolic, A. Cesarini, E. Billeter, F. Weyand, P. Trtik, M. Strobl, A. Borgschulte, Angew. Chem. Int. Ed. 62 (2023) e202307367. [26] M. Zielinski, L. Cassayre, P. Floquet, M. Macouin, P. Destrac, N. Coppey, C. Foulet, B. Biscans, Waste Manag. 118 (2020) 677-687. [27] J.M. Joubert, V. Paul-Boncour, F. Cuevas, J. Zhang, M. Latroche, J. Alloy. Compd. 862 (2021) 158163-158173. [28] A.N. Kazakov, D.V. Blinov, V.Y. Bodikov, S.V. Mitrokhin, A.A. Volodin, Int. J. Hy-drog. Energy 46 (2021) 13622-13631. [29] J. Serrano-Sevillano, V. Charbonnier, N. Madern, M. Latroche, C. Magén, V. Serin, J. Monnier, M. Casas-Cabanas, J. Zhang, Chem. Mater. 34 (2022) 4568-4576. [30] H. Wang, M. Du, Q. Wang, Z. Li, S. Wang, Z. Gao, J.J. Derksen, Int. J. Hydrog. Energy 48 (2023) 23568-23580. [31] M. He, J. Hu, H. Yan, X. Zhong, Y. Zhang, P. Liu, J. Kong, J. Gu, Adv. Funct. Mater. (2024) 2316691, doi: 10.1002/adfm.202316691 [32] Y. Aoki, S. Kobayashi, T. Yamaguchi, E. Tsuji, H. Habazaki, K. Yashiro, T. Kawada, T. Ohtsuka, J. Phys. Chem. C 120 (2016) 15976-15985. [33] H. Zhang, J. Yi, X. Jiang, ACS Appl. Mater. Interfaces 9 (2017) 17218-17225. [34] T. Zhu, D.E. Fowler, K.R. Poeppelmeier, M. Han, S.A. Barnett, J. Electrochem. Soc. 163 (2016) F952-F968. [35] G. Deng, Y. Chen, M. Tao, C. Wu, X. Shen, H. Yang, Electrochim. Acta 54 (2009) 3910-3914. [36] D.K. Lim, H.N. Im, J. Kim, S.J. Song, J. Phys. Chem. Solids 74 (2013) 115-120. [37] G. Deng, Y. Chen, M. Tao, C. Wu, X. Shen, H. Yang, M. Liu, Int. J. Hydrog. Energy 34 (2009) 5568-5573. [38] H. Sakaguchi, K. Hatakeyama, S.S. Kobayashi, T. Esaka, Mater. Res. Bull. 37 (2002) 1547-1556. [39] X. Xia, X.Q. Li, J.J. Cui, H.T. Liu, Chin. J. Chem. 62 (2004) 29-34. [40] T. Esaka, H. Sakaguchi, S. Kobayashi, Solid State Ionics 166 (2004) 351-357. [41] Y. Gao, G. Yang, Y. Dai, X. Li, J. Gao, N. Li, P. Qiu, L. Ge, ACS Appl. Mater. Inter-faces 12 (2020) 17364-17375. [42] A. Queraltó, D. Graf, R. Frohnhoven, T. Fischer, H. Vanrompay, S. Bals, A. Barta-syte, S.Mathur, ACS Sustain. Chem. Eng. 7 (2019) 6023-6032. [43] J. Huang, L. Hu, Z. Yang, J. Li, P. Wang, Y. Wei, P. Sun, Inorg. Chem. Commun. 150 (2023) 110458. [44] M.M. Arman, S.I. El-Dek, J. Phys. Chem. Solids 152 (2021) 109980. [45] D.K. Lim, H.N. Im, B. Singh, C.J. Park, S.J. Song, Electrochim. Acta 102 (2013) 393-399. [46] Y. Pei, W. Du, Y. Li, W. Shen, Y. Wang, S. Yang, S. Han, Phys. Chem. Chem. Phys. 17 (2015) 18185-18192. [47] Y. Yuan, Z. Dong, Y. Li, L. Zhang, Y. Zhao, B. Wang, S. Han, Prog. Nat. Sci. Mater. 27 (2017) 88-92. [48] G. Su, Z. Liang, J. Zhong, H. Ning, K. Lu, T. Qiu, D. Luo, X. Liu, R. Yao, J. Peng, Org. Electron. 116 (2023) 106759. [49] T.M.H.Le, J ECS, Solid State Sci.Technol. 12 (2023) 011003. [50] R. Ramadan, A.M. Ismail, J. Inorg. Organomet.Polym. Mater. 33 (2023) 2506-2516. [51] K.M. Szkop, A.R. Jupp, D.W. Stephan, J. Am. Chem.Soc. 140 (2018) 12751-12755. [52] Y. Pei, Y. Li, J.Y. Che, W. Shen, Y. Wang, S. Yang, S. Han, Int. J. Hydrog. Energy 40 (2015) 8742-8749. [53] G. Zheng, B.N. Popov, R.E. White, J. Appl. Electrochem. 28 (1998) 381-385. |
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