J. Mater. Sci. Technol. ›› 2026, Vol. 265: 54-63.DOI: 10.1016/j.jmst.2025.11.036
• Research Article • Previous Articles Next Articles
Ghufran Aulia Bin Azizara,1, Dong Il Kangb,1, Hafidatul Wahidahb,1, Hyeon Gyu Leea, Hojin Ahnc,*, Jong Wook Honga,*
Received:2025-09-23
Revised:2025-11-26
Accepted:2025-11-26
Published:2026-09-10
Online:2025-11-29
Contact:
* E-mail addresses: hojinahn@konkuk.ac.kr (H. Ahn), jwhong@kentech.ac.kr (J.W. Hong).
About author:1These authors contributed equally to this work.
Ghufran Aulia Bin Azizar, Dong Il Kang, Hafidatul Wahidah, Hyeon Gyu Lee, Hojin Ahn, Jong Wook Hong. Interface-engineered PtCu-polyaniline core-shell nanocrystals for efficient and durable ammonia oxidation reaction[J]. J. Mater. Sci. Technol., 2026, 265: 54-63.
| [1] A. Odenweller, F. Ueckerdt, Nat. Energy 10 (2025) 110-123. [2] M.S. Akhtar, M.A. Khan, V. Khaligh, J. Liu, ACS Sustain. Chem. Eng. 13(2025) 13071-13084. [3] A. Ahmad, A. Nairan, Z. Feng, R. Zheng, Y. Bai, U. Khan, J. Gao, Small 20 (2024) e2311929. [4] Y. Park, D. Kim, S. Jang, S.J. Yoo, M.G. Kim, Adv. Energy Mater. 15(2025) e01586. [5] W. Wan, K. Liang, P. Zhu, P. He, S. Zhang, J. Mater. Sci.Technol. 178(2024) 226-246. [6] M.D. Allendorf, V. Stavila, J.L. Snider, M. Witman, M.E. Bowden, K. Brooks, B.L. Tran, T. Autrey, Nat. Chem. 14(2022) 1214-1223. [7] M.D. Allendorf, Z. Hulvey, T. Gennett, A. Ahmed, T. Autrey, J. Camp, E. Seon Cho, H. Furukawa, M. Haranczyk, M. Head-Gordon, S. Jeong, A. Karkamkar, D.-J. Liu, J.R. Long, K.R. Meihaus, I.H. Nayyar, R. Nazarov, D.J. Siegel, V. Stavila, J.J. Urban, S.P. Veccham, B.C. Wood, Energy Environ. Sci. 11(2018) 2784-2812. [8] E.I. Epelle, W. Obande, G.A. Udourioh, I.C. Afolabi, K.S. Desongu, U. Orivri, B. Gunes, J.A. Okolie, Sustain. Energ. Fuels 6 (2022) 3324-3343. [9] M.J. Zhou, Y. Miao, Y. Gu, Y. Xie, Adv. Mater. 36(2024) e2311355. [10] Q. Lai, Y. Sun, T. Wang, P. Modi, C. Cazorla, U.B. Demirci, J.R.Ares Fernandez, F.Leardini, K.F. Zinsou, Adv. Sustain. Syst. 3(2019) 1900043. [11] Y. Ding, L. Tong, X. Liu, Y. Liu, Y. Zhao, Energy Environ. Mater. 8(2025) e70041. [12] F. Chang, W. Gao, J. Guo, P. Chen, Adv. Mater. 33(2021) e2005721. [13] S. Chatterjee, R.K. Parsapur, K.W. Huang, ACS Energy Lett. 6(2021) 4390-4394. [14] M. Krebsz, T. Pasinszki, S. Sreenath, J. Andrews, V.P. Ting, Sustain. Energ. Fuels 9 (2025) 5108-5150. [15] X. Du, A. Du, D. Wang, Y. Mao, Z. Zhang, W. Xie, J. Am. Chem.Soc. 147(2025) 8083-8087. [16] H. Zheng, Y. Jia, C. Jin, H. Che, T. Chia, G. Liu, L. Wang, Y. Zhao, S. He, H. Liu, X. Wang, Y. Yu, M. Yan, J. Mater. Sci.Technol. 223(2025) 173-185. [17] D.R. MacFarlane, P.V. Cherepanov, J. Choi, B.H.R. Suryanto, R.Y. Hodgetts, J.M. Bakker, F.M. Ferrero Vallana, A.N. Simonov, Joule 4 (2020) 1186-1205. [18] A. Villalba-Herreros, R. d'Amore-Domenech, A.Crucelaegui, T.J. Leo, ACS Sustain. Chem. Eng. 11(2023) 4716-4726. [19] M.A. Sattar, M.G. Rasul, M.I. Jahirul, M.M. Hasan, Sustain. Energ. Fuels 8 (2024) 3545-3573. [20] P.K. Panigrahi, B. Chandu, M.R. Motapothula, N. Puvvada, Energy Fuels 38 (2024) 2630-2653. [21] F. Jiao, B. Xu, Adv. Mater. 31(2019) e1805173. [22] K.D.Tong Wu, M.Luo, B. Wang, M. Wang, Shibo Xi, M. Zhang, F. Huang, K.S. Exner, Y. Lum, Angew. Chem. Int. Ed. 64(2025) e202418691. [23] T. Wang, X. Cao, L. Jiao, Angew. Chem. Int. Ed. 61(2022) e202213328. [24] N.S. Hassan, A.A. Jalil, R. Saravanan, N.M. Izzuddin, M.B. Bahari, D. Prasetyoko, R.E. Nugraha, J. Mater. Chem. A 12 (2024) 23202-23217. [25] H. Tan, Z. Sang, Y. Tian, W. Peng, X. Liu, J. Liang, ACS Energy Lett. 9(2024) 5120-5136. [26] X. Yang, L. Sun, X. Liu, Z. Yang, H. Sun, W. Liu, H. Chen, ACS Catal. 14(2024) 6236-6246. [27] P. Babar, G.G. Botte, ACS Sustain. Chem. Eng. 12(2024) 13030-13047. [28] H.Y. Liu, H.M.C.Lant, C.C. Cody, J. Jelušić, R.H. Crabtree, G.W. Brudvig, ACS Catal. 13(2023) 4675-4682. [29] N.M. Adli, H. Zhang, S. Mukherjee, G. Wu, J. Electrochem. Soc. 165(2018) J3130-J3147. [30] Y. He, S. Liu, Q. Cheng, Y. Huan, L. Zhang, W. Shi, W. Shen, F. Zhou, X. Yuan, M. Wang, C. Yan, T. Qian, J. Am. Chem.Soc. 147(2025) 28137-28150. [31] H.S. Pillai, Y. Li, S.H. Wang, N. Omidvar, Q. Mu, L.E.K.Achenie, F. Abild-Pedersen, J.Yang, G. Wu, H. Xin, Nat. Commun. 14(2023) 792. [32] M. Zhang, J. Zhang, G. Jeerh, P. Zou, B. Sun, M. Walker, K. Xie, S. Tao, J. Mater. Chem. A 10 (2022) 18701-18713. [33] Y. Tian, Z. Mao, L. Wang, J. Liang, Small Struct. 4(2023) 2200266. [34] C. Wang, J. Li, Y. Yuan, B. Ouyang, Z. Guo, C. Lin, X. Yang, B. Kang, C. Li, Y. Sun, K. Xu, Angew. Chem. Int. Ed. 64(2025) e202505616. [35] H.Y. Kim, J. Kim, E. Lee, H. Choi, H. Chun, J. Kundu, S.I. Choi, K. Lee, J.Y. Kim, J. Mater. Chem. A 13 (2025) 6176-6204. [36] X. Ding, Y. Ji, H. Huang, J. Huang, S. Chen, C. Yang, F. Li, M. Luo, Chem. Catalysis 4 (2024) 100932. [37] X. Xi, Y. Fan, K. Zhang, Y. Liu, F. Nie, H. Guan, J. Wu, Chem. Eng. J. 435(2022) 134818. [38] K. Yang, J. Liu, B. Yang, J. Catal. 405(2022) 626-633. [39] J. Fingerhut, J.A.DeVine, R.Yin, M.E. Bernard, A. Bremer, D. Borodin, K. Golibrzuch, T.N. Kitsopoulos, D.J. Auerbach, H. Guo, A.M. Wodtke, ACS Catal. 15(2025) 10521-10530. [40] X. Lin, X. Zhang, Z. Wang, X. Zhu, J. Zhu, P. Chen, T. Lyu, C. Li, Z. Qun Tian, P.Kang Shen, J. Colloid Interface Sci. 601(2021) 1-11. [41] Y. Li, J. Li, L. Chen, Y. Long, X. Yuan, J. Li, Y. Peng, ACS Catal. 15(2025) 7180-7190. [42] J. Yoo, J. Choi, S. Choi, C. Lee, H.M. Lee, ACS Catal. 15(2024) 167-178. [43] F. Fang, Q. Cheng, M. Wang, Y. He, Y. Huan, S. Liu, T. Qian, C. Yan, J. Lu, ACS Nano 19 (2025) 1260-1270. [44] S.I. Venturini, D.R.Martins de Godoi, J.Perez, ACS Catal. 13(2023) 10835-10845. [45] Y. Li, X. Li, H.S. Pillai, J. Lattimer, N. Mohd Adli, S. Karakalos, M. Chen, L. Guo, H. Xu, J. Yang, D. Su, H. Xin, G. Wu, ACS Catal. 10(2020) 3945-3957. [46] H. Wang, D.R. Dekel, H.D. Abruna, J. Am. Chem.Soc. 146(2024) 15926-15940. [47] Y. Han, L. Zhang, J. Gu, J. Qian, X. Wang, J. Alloy. Compd. 1010(2025) 177286. [48] C.E. Hong, D.H. Park, Y. Gu, S.H. Park, D.M. Lim, D.G. Seo, J.I. Han, K.W. Park, Int. J. Hydrog. Energy 87 (2024) 1367-1376. [49] Q. Xue, Y. Zhao, J. Zhu, Y. Ding, T. Wang, H. Sun, F. Li, P. Chen, P. Jin, S. Yin, Y. Chen, J. Mater. Chem. A 9 (2021) 8444-8451. [50] C. Dai, X. Yuan, Y. Wang, X. Liu, C. Ju, L. Hu, S. He, R. Shi, Y. Liu, J. Zhang, Y. Zhu, J. Wang, Small 21 (2025) e2501582. [51] T. Yu, K. Tan, J. Wu, Y. Zou, S. Yin, Nano Res. 17(2023) 1182-1189. [52] C. Spori, J.T.H.Kwan, A. Bonakdarpour, D.P. Wilkinson, P. Strasser, Angew. Chem. Int. Ed. 56(2017) 5994-6021. [53] R. Jamil, R. Ali, S. Loomba, J. Xian, M. Yousaf, K. Khan, B. Shabbir, C.F. McConville, A. Mahmood, N. Mahmood, Chem. Catalysis 1 (2021) 802-854. [54] S. Zaman, M. Khalid, S. Shahgaldi, ACS Energy Lett. 9(2024) 2922-2935. [55] S. Dong, R. Ren, J. Zhang, X. Bao, X. Liu, Q. Shi, Z. Chen, H. Shao, J. Mater. Sci.Technol. 227(2025) 192-215. [56] Y. Zhuang, J. Yang, L. Meng, C. Ma, L. Peng, D. Chen, Q. Chen, Ind. Chem. Mater. 1(2023) 458-464. [57] X. Chen, Z. Ke, X. Wang, H. Jin, Y. Cheng, Y. Xiao, R. Jiang, Y. Da, L. Fan, H. Li, D. Liu, S. Yang, W. Chen, Angew. Chem. Int. Ed. 64(2025) e202505180. [58] H. Xu, A.L. Wang, Y.X. Tong, G.R. Li, ACS Catal. 6(2016) 5198-5206. [59] T. Lan, M. Gao, J.Y. Hasegawa, Y. Shen, W. Qu, Q. Hu, J. Deng, D. Cheng, D. Zhang, ACS Catal. 13(2023) 14070-14079. [60] A. Paliwal, B. Li, H. Long, L. Assaf, R.T. Haasch, J.K. Gupta, M.A. Reynolds, Y.J. Son, K. Zhang, S. Ye, P.J.A.Kenis, A.A. Gewirth, ACS Catal. 15(2025) 10856-10867. [61] H. Jiang, Z. Wang, S. Chen, Y. Xiao, Y. Zhu, W. Wu, R. Chen, N. Cheng, J. Mater. Sci.Technol. 205(2025) 212-220. [62] J. Wang, X. Dong, J. Liu, W. Li, L.T. Roling, J. Xiao, L. Jiang, ACS Catal. 11(2021) 7422-7428. [63] J. Liu, W. Yu, M. Wang, J. Gao, X. Cui, L. Jiang, ACS Catal. 15(2025) 4110-4120. [64] J. Wang, J. Wang, Z. Kong, K. Lv, C. Teng, Y. Zhu, Adv. Mater. 29(2017) 1703044. [65] Q. Zhou, G. Shi, J. Am. Chem.Soc. 138(2016) 2868-2876. [66] G.L. Xu, X. Liu, A. Daali, R. Amine, Z. Chen, K. Amine, Adv. Funct. Mater. 30(2020) 2004748. [67] Y. Chen, Y. Wu, W. Zhao, Chem. Eng. J. 488(2024) 150933. [68] J. He, M. Wang, W. Wang, R. Miao, W. Zhong, S.Y. Chen, S. Poges, T. Jafari, W. Song, J. Liu, S.L. Suib, ACS Appl. Mater. Interfaces 9 (2017) 42676-42687. [69] H.E. Bae, S. Lee, J. Hong, T.B.Ngoc Huynh, J.Song, Y.E. Sung, J. Kim, O.J. Kwon, ACS Catal. 15(2025) 7842-7852. [70] K. Cao, Q. Zhu, B. Shan, R. Chen, Sci. Rep. 5(2015) 8470. [71] Y. Nakaya, J. Hirayama, S. Yamazoe, K.I. Shimizu, S. Furukawa, Nat. Commun. 11(2020) 2838. [72] S. Chen, Z. Wei, X. Qi, L. Dong, Y.G. Guo, L. Wan, Z. Shao, L. Li, J. Am. Chem.Soc. 134(2012) 13252-13255. [73] H. Wang, F. Meng, F. Huang, C. Jing, Y. Li, W. Wei, Z. Zhou, ACS Appl. Mater. Interfaces 11 (2019) 12142-12153. [74] W. Yang, Q. Ji, K. Xiong, Y. Dong, Y. Fu, Y. Zhu, ACS Appl. Polym. Mater. 5(2023) 10265-10275. [75] H. Peng, F. Liu, X. Liu, S. Liao, C. You, X. Tian, H. Nan, F. Luo, H. Song, Z. Fu, P. Huang, ACS Catal. 4(2014) 3797-3805. [76] L.G. Bulusheva, E.O. Fedorovskaya, A.V. Okotrub, E.A. Maximovskiy, D.V. Vyalykh, X. Chen, H. Song, Phys. Status Solidi B 248 (2011) 2484-2487. [77] Y. Wang, J. Duan, Y. Zhao, X. Yang, Q. Tang, Electrochim. Acta 291 (2018) 114-123. [78] Y. Nie, L. Li, Z. Wei, Chem. Soc. Rev. 44(2015) 2168-2201. [79] S. Goswami, S. Nandy, E. Fortunato, R. Martins, J. Solid State Chem. 317(2023) 123679. [80] L. Zhang, T. Liu, R. Ren, J. Zhang, D. He, C. Zhao, H. Suo, J. Hazard. Mater. 392(2020) 122342. [81] S. Zhou, S. Deng, Z. Wang, W. Liao, M. Chen, Q. Wang, Energy Fuels 35 (2021) 20300-20308. [82] D. Lee, Y. Kim, J. Song, H.J. Choi, M. Karuppannan, Y.H. Cho, O.J. Kwon, ACS Appl. Energy Mater. 5(2022) 596-603. [83] B. Jia, X. Xie, J. Lin, H. Wang, P. Hu, F. Wang, X. Fan, J. Zheng, T. Ma, L. Ye, Angew. Chem. Int. Ed. 64(2025) e202508674. [84] D. Gupta, S. Chakraborty, R.G. Amorim, R. Ahuja, T.C. Nagaiah, J. Mater. Chem. A 9 (2021) 21291-21301. [85] C. Lin, S. Yu, Y. Zhang, C. Wang, B. Ouyang, Z. Dong, B. Kang, C. Li, Y. Sun, K. Xu, Adv. Mater. (2025) e11476. |
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