J. Mater. Sci. Technol. ›› 2026, Vol. 259: 173-187.DOI: 10.1016/j.jmst.2025.08.067
• Research Article • Previous Articles Next Articles
Dengke Fua,b, Ming Gaoa,b,*, Siying Chenc, Lei Miaoc, Yaping Panc, Lili Tana,b,*
Received:2025-06-19
Revised:2025-08-12
Accepted:2025-08-26
Published:2026-07-10
Online:2025-10-10
Contact:
*E-mail addresses: mgao16b@imr.ac.cn (M. Gao), lltan@imr.ac.cn (L. Tan).
Dengke Fu, Ming Gao, Siying Chen, Lei Miao, Yaping Pan, Lili Tan. Long-term biodegradation behavior of pure molybdenum in physiological medium and dynamic evolution of corrosion product film[J]. J. Mater. Sci. Technol., 2026, 259: 173-187.
| [1] Y. Liu, Y.F. Zheng, X.H. Chen, J.A. Yang, H.B. Pan, D.F. Chen, L.N. Wang, J.L. Zhang, D.H. Zhu, S.L. Wu, K.W.K.Yeung, R.C. Zeng, Y. Han, S.K. Guan, Adv. Funct. Mater. 29 (2019) 1805402. [2] M. Gao, I.P. Etim, K. Yang, L. Tan, Z. Ma, Mater. Sci. Eng. A 829 (2022) 142058. [3] W. Zhang, X. Sheng, B. Zhang, Y. Fu, Q. Wang, K. Yang, L. Tan, Q. Zhang, J. Magnes. Alloy. 13 (2024) 3029-3222. [4] H. Yang, D. Jin, J. Rao, J. Shi, G. Li, C. Wang, K. Yan, J. Bai, G. Bao, M. Yin, Y. Zheng, Adv. Mater. 35 (2023) 2301074. [5] S. Lu, P. Wang, Q. Wang, P. Deng, Y. Yuan, X. Fu, Y. Yang, L. Tan, K. Yang, X. Qi, Bioact. Mater. 40 (2024) 34-46. [6] A.A. Oliver, M.Sikora-Jasinska, A.G. Demir, R.J. Guillory, Acta Biomater. 127 (2021) 1-23. [7] J. Zhang, H. Qiao, Q. Li, P. Zhu, C. Han, Adv. Eng. Mater. 26 (2024) 2401503. [8] H. Dong, F. Lin, A.R. Boccaccini, S. Virtanen, Corros. Sci. 182 (2021) 109278. [9] D. Bian, Z. Tong, G. Gong, H. Huang, L. Fang, H. Yang, W. Gu, H. Yu, Y. Zheng, Adv. Mater. 36 (2024) 2401614. [10] S. Lu, Q. Wang, Y. Zhang, H. Li, H. Feng, L. Tan, K. Yang, J. Mater. Sci.Technol. 152 (2023) 94-99. [11] Z. Tong, G. Gong, H. Huang, G. Cai, L. Fang, H. Yu, C. Li, Y. Zheng, D. Bian, Acta Biomater. 191 (2025) 66-79. [12] Y.J. Zhang, Z.Y. Lv, X. Luo, H.F. Qiang, J.Q. He, C.Y. Hou, Y.G. Li, F.Z. Liu, L.N. Wang, Rare Metals 44 (2025) 1294-1311. [13] Y. Qian, Y. Chen, J. Jiang, J. Pei, J. Li, J. Niu, J. Zhu, G. Yuan, Bioact. Mater. 45 (2025) 231-245. [14] C. Zhou, H.-F. Li, Y.-X. Yin, Z.-Z. Shi, T. Li, X.-Y. Feng, J.-W. Zhang, C.-X. Song, X.-S. Cui, K.-L. Xu, Y.-W. Zhao, W.-B. Hou, S.-T. Lu, G. Liu, M.-Q. Li, J.-Y. Ma, E. Toft, A.A. Volinsky, M. Wan, X.-J. Yao, C.-B. Wang, K. Yao, S.-K. Xu, H. Lu, S.-F. Chang, J.-B. Ge, L.-N. Wang, H.-J. Zhang, Acta Biomater. 97 (2019) 657-670. [15] D.H.K.Chow, J. Wang, P.Wan, L. Zheng, M.T.Y. Ong, L. Huang, W. Tong, L. Tan, K. Yang, L. Qin, Bioact. Mater. 6 (2021) 4176-4185. [16] H. Jin, S. Zhao, R. Guillory, P.K. Bowen, Z. Yin, A. Griebel, J. Schaffer, E.J. Earley, J. Goldman, J.W. Drelich, Biomater. Adv. 84 (2018) 67-79. [17] S. Zhao, J.-M. Seitz, R.Eifler, H.J. Maier, R.J. Guillory, E.J. Earley, A. Drelich, J. Goldman, J.W. Drelich, Biomater. Adv. 76 (2017) 301-312. [18] K. Jing, R. Liu, Z.M. Xie, J.G. Ke, X.P. Wang, Q.F. Fang, C.S. Liu, H. Wang, G. Li, X.B. Wu, Acta Mater. 227 (2022) 117725. [19] W. Chen, X. Li, S. Jin, L. Yang, Y. Li, X. He, W. Zhang, Y. Wu, Z. Hui, Z. Yang, J. Yang, W. Xiao, G. Sha, J. Wang, Z. Zhou, Nat. Commun. 14 (2023) 8336. [20] M. Sikora-Jasinska, L.M. Morath, M.P. Kwesiga, M.E. Plank, A.L. Nelson, A.A. Oliver, M.L. Bocks, R.J. Guillory, J. Goldman, Bioact. Mater. 14 (2022) 262-271. [21] J. Mayers, B. Hofman, I. Sobiech, M.P. Kwesiga, Bioeng. Biotech. 12 (2024) 1457553. [22] C. Redlich, P. Quadbeck, M. Thieme, B. Kieback, Acta Biomater. 104 (2020) 241-251. [23] L. Yin, H. Cheng, S. Mao, R. Haasch, Y. Liu, X. Xie, S.-W. Hwang, H.Jain, S.-K. Kang, Y. Su, R. Li, Y. Huang, J.A. Rogers, Adv. Funct. Mater. 24 (2014) 645-658. [24] H. Kim, B. Rigo, G. Wong, Y.J. Lee, W.-H. Yeo, Nano-Micro Lett. 16 (2023) 16-52. [25] C. Redlich, A. Schauer, J. Scheibler, G. Poehle, P. Barthel, A. Maennel, V. Adams, T. Weissgaerber, A. Linke, P. Quadbeck, Metals 11 (2021) 761. [26] Y. Shen, Y. Cheng, Y. Zheng, Corros. Sci. 228 (2024) 111816. [27] A. Schauer, C. Redlich, J. Scheibler, G. Poehle, P. Barthel, A. Maennel, V. Adams, T. Weissgaerber, A. Linke, P. Quadbeck, Materials 14 (2021) 7776. [28] A.T. Nelson, E.S. Sooby, Y.J. Kim, B. Cheng, S.A. Maloy, J. Nucl. Mater. 448 (2014) 441-447. [29] B. Wang, Y. Zhou, D. Yang, L. Xu, X. Li, S. Wei, Corros. Sci. 220 (2023) 111266. [30] W. Xu, M. Chen, X. Lu, D.-W. Zhang, H.-P. Singh, J.-S. Yu, Y. Pan, X.-H. Qu, C.-Z. Liu, Corros. Sci. 168 (2020) 108557. [31] Y.L. Chou, J.W. Yeh, H.C. Shih, Corros. Sci. 52 (2010) 2571-2581. [32] J.W.Calderón-Hernández, D.P. Moura da Fonseca, O.M. Prada-Ramirez, D. Hin-capie-Ladino, H.G. de Melo, A.F. Padilha, J. Mater. Res. Technol. 30 (2024) 3112-3121. [33] R. Tolouei, J. Harrison, C. Paternoster, S. Turgeon, P. Chevallier, D. Mantovani, Phys. Chem. Chem. Phys. 18 (2016) 19637. [34] X. Liu, Y. Cheng, Z. Guan, Y. Zheng, Corros. Sci. 170 (2020) 108661. [35] X. Lin, L. Tan, Q. Zhang, K. Yang, Z. Hu, J. Qiu, Y. Cai, Acta Biomater. 9 (2013) 8631-8642. [36] V.S. Shaldaev, A.N. Malofeeva, A.D. Davydov, Russ. J. Electrochem. 50 (2014) 994-998. [37] W. Zhang, J. Lu, L. Tan, D. Ni, R. Zhang, Q. Zhou, K. Yang, Q. Wang, J. Magnes. Alloy. 12 (2024) 4937-4952. [38] W. Cairang, T. Li, D. Xue, H. Yang, P. Cheng, C. Chen, Y. Sun, Y. Zeng, X. Ding, J. Sun, Corros. Sci. 186 (2021) 109469. [39] Y. Liu, Z. Wang, W. Ke, Corros. Sci. 80 (2014) 169-176. [40] Y. Chen, W. Zhang, M.F. Maitz, M. Chen, H. Zhang, J. Mao, Y. Zhao, N. Huang, G. Wan, Corros. Sci. 111 (2016) 541-555. [41] N.T.C.Oliveira, A.C. Guastaldi, Acta Biomater. 5 (2009) 399-405. [42] A. Fattah-alhosseini, A. Saatchi, M.A. Golozar, K. Raeissi, Electrochim. Acta 54 (2009) 3645-3650. [43] Y. Yang, L. Guo, H. Liu, J. Power Sources 196 (2011) 5503-5510. [44] I. Matsushima, T. Ueno, Corros. Sci. 11 (1971) 129-IN2. [45] S. Huang, L. Chen, B. Jiang, L. Qiao, Y. Yan, J. Electroanal. Chem. 886 (2021) 115145. [46] F. Gao, E. Su, J. Hou, J. Wang, Y. Zhou, H. Qin, Z. Xie, J. Mao, H. Li, W. Tao, Y. Chen, J. Qian, G. Wan, Corros. Sci. 240 (2024) 112439. [47] M.A. Osipenko, J. Karczewski, M. Dominów, M. Prześniak-Welenc, I.V. Makarava, I. Kurilo, D.S. Kharytonau, J. Ryl, Measurement 222 (2023) 113683. [48] C. Wang, M. Sun, C. Yang, H. Wang, J. Wang, L. Mao, Y. Yang, T. Ying, P.K. Chu, X. Zeng, J. Magnes. Alloy. 13 (2025) 1523-1535. [49] S. Tamilselvi, V. Raman, N. Rajendran, Electrochim. Acta 52 (2006) 839-846. [50] C. Qiao, X. Sun, Y. Wang, L. Hao, X. An, Mater. Lett. 297 (2021) 129935. [51] C. Yang, C. Wang, Z. Shen, L. Zhou, L. Sheng, D. Xu, Y. Zheng, P.K. Chu, S. Xiao, T. Ying, X. Zeng, J. Mater. Sci.Technol. 224 (2025) 312-327. [52] C. Yang, T. Ying, A. Huang, J. Huang, P. Chen, P.K. Chu, X. Zeng, Corros. Com-mun. 17 (2025) 35-43. [53] Y. Wang, C. Liu, Z. Jiao, L. Cai, C. Sun, D. Wang, L. Cui, C. Wen, R.-C. Zeng, J.Mater. Sci. Technol. 175 (2024) 170-184. [54] L. Wei, C. Dong, M. Lu, Chin. J. Eng. 32 (2010) 213-218. [55] D.R. Lide, CRC Handbook of Chemistry and Physics, 86th ed., CRC Press, Boca Raton, 2006. [56] M.P. Dieterle, G. Mestl, Phys. Chem. Chem. Phys. 4 (2002) 822-826. [57] M. Petrova, M. Bojinov, S. Zanna, P. Marcus, Electrochim. Acta 56 (2011) 7899-7906. [58] K. Lee, S. Sun, H. Ko, S. Beom Cho, G. Lee, D. Lee, T. Song, U. Paik, Appl. Surf. Sci. 615 (2023) 156330. [59] Y. Gou, Q. Liu, X. Shi, A.M. Asiri, J. Hu, X. Sun, Chem. Commun. 54 (2018) 5066-5069. [60] C.O.A. Olsson, D. Landolt, Electrochim. Acta 48 (2003) 1093-1104. [61] H.C.Lan Yin, S.Mao, Adv. Funct. Mater. 24 (2014) 645-658. [62] V.S. Saji, C.W. Lee, ChemSusChem 5 (2012) 1146-1161. [63] L.D. Rosa, C.R. Tomachuk, J. Springer, D.B. Mitton, F. Bellucci, Mater. Corros. 55 (2004) 602-609. [64] L. Jinlong, L. Tongxiang, W. Chen, Mater. Lett. 171 (2016) 38-41. [65] S. Huang, W. Wu, Y. Su, L. Qiao, Y. Yan, Corros. Sci. 178 (2021) 109071. [66] M. Nishimoto, I. Muto, Y. Sugawara, N. Hara, J. Electrochem. Soc. 166 (2019) 3081-3089. [67] R. Gorelik, A.K.K.Singh, npj Mater.Degrad. 7 (2023) 63. [68] X. Liu, H. Yang, Y. Liu, P. Xiong, H. Guo, H.H. Huang, Y. Zheng, JOM 71 (2019) 1414-1425. [69] R.C. Zeng, X.T. Li, S.Q. Li, F. Zhang, E.H. Han, Sci. Rep. 5 (2015) 13026. [70] J.L. Crolet, J. Mater. Sci. 28 (10) (1993) 2589-2606. [71] W. Zai, Y. Su, H.C. Man, J. Lian, G. Li, Appl. Surf. Sci. 492 (2019) 314-327. [72] J. Zhao, D. Sun, M. Arroussi, T. Lian, X. Zhang, C. Yang, K. Yang, Corros. Sci. 207 (2022) 110592. [73] P. Lin, Z. Li, Z. Yang, J. Chin. Soc.Corros. Prot. 45 (2024) 8-16 (in Chinese). [74] D. Liu, J. Chen, J. Zhou, J. Dai, H. Qin, G. Wan, J. Qian, P. Li, J. Li, Mater. Today Bio 31 (2025) 101519. [75] M.N. Hull, J. Electroanal. Chem.Interfacial Electrochem. 38 (1972) 143-157. [76] I.A.D.Castro, R.S. Datta, J.Z. Ou, A. Castellanos-Gomez, K.Kalantar-Zadeh, Adv. Mater. 29 (2017) 1701619. [77] M. Kaseem, H.-C. Choe, Corros.Sci. 192 (2021) 109764. [78] W. Du, Y. Shi, W. Zhou, Y. Yu, B. Zhang, Angew. Chem. Int. Ed. 60 (2021) 7051-7055. [79] J.D. Henderson, X. Li, D.W. Shoesmith, J.J. Noel, K. Ogle, Corros. Sci. 147 (2019) 32-40. [80] Y.T. Sun, X. Tan, L.L. Lei, J. Li, Y.M. Jiang, Tungsten 3 (2021) 329-337. [81] M. Kaneko, H.S. Isaacs, Corros. Sci. 44 (2002) 1825-1834. [82] A.S. Alshamsi, Int. J. Electrochem. Sci. 8 (2013) 591-605. [83]. M. Ebrahimi, I. Danaee, H. Eskandari, S. Nikmanesh, Int. J. ISSI 14 (2017) 9-15 https://journal.issiran.com/article_29805_0600616a9b75896aa23eca2edb9fc569.pdf [84] A. Tanji, F. Gapsari, A. Syahrom, M.H. Idris, H. Hermawan, J. Alloy. Compd. 871 (2021) 159582. [85] B. Tian, X. Li, J. Zhang, M. Zhang, D. Gan, D. Deng, L. Sun, X. He, C. Wu, F. Chen, Int. J. Oral Sci. 14 (2022) 523-540. [86] H. Lei, Q. Li, G. Li, T. Wang, X. Lv, Z. Pei, X. Gao, N. Yang, F. Gong, Y. Yang, G. Hou, M. Chen, J. Ji, Z. Liu, L. Cheng, Bioact. Mater. 31 (2024) 53-62. [87] W.-Y. Li, Y.-L. Dai, W.-H. Cai, S.-H. Lin, L. Guo, D.-C. Zhang, Y. Li, C. Wen, Rare Metals 43 (2024) 5284-5304. [88] S.W. Ge, P. Hu, J. Deng, S.L. Li, H.R. Xing, J.Y. Han, X.J. Hua, L. Wang, J. Yang, B. Jin, Tungsten 6 (2023) 342-354. [89] A. Kastrati, J. Mahilli, J. Dirschinger, F. Dotzer, H. Schühlen, F.J. Neumann, M. Fleckenstein, C. Pfafferott, M. Seyfarth, A. Schömig, J. Am. Coll.Cardiol. 103 (2001) 2816-2821. [90] P.-C. Wong, P.-H. Tsai, M.J. Maqnun, Y.-C. Chen, J.S.-C. Jang, Mater. Lett. 347 (2023) 134651. [91] Y. Xiong, Z. Han, J. Qin, L. Dong, H. Zhang, Y. Wang, H. Chen, X. Li, Mater. Des. 208 (2021) 109911. |
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