J. Mater. Sci. Technol. ›› 2025, Vol. 220: 210-222.DOI: 10.1016/j.jmst.2024.08.057
• Research Article • Previous Articles Next Articles
Peng Hea, Meiqian Fua, Fangqian Wanga, Yushan Zhanga, Chen Lib, Jiening Fenga, Lianwen Dengb, Jun Yana,*
Received:
2024-05-06
Revised:
2024-07-25
Accepted:
2024-08-04
Published:
2025-06-10
Online:
2025-06-17
Contact:
*E-mail address: Peng He, Meiqian Fu, Fangqian Wang, Yushan Zhang, Chen Li, Jiening Feng, Lianwen Deng, Jun Yan. Unlocking versatile capabilities: Mixed-valence decavanadate aerogels for boosting radar, infrared, and thermal stealth[J]. J. Mater. Sci. Technol., 2025, 220: 210-222.
[1] C. Xu, G.T. Stiubianu, A .A. Gorodetsky, Science 359 (2018) 1495-1500. [2] H. Zhu, Q. Li, C. Tao, Y. Hong, Z. Xu, W. Shen, S. Kaur, P. Ghosh, M. Qiu, Nat. Commun. 12(2021) 1805. [3] X. Liu, W.J. Padilla, Adv. Mater. 28(2016) 871-875. [4] V.P. Prasadam, N. Bahlawane, F. Mattelaer, G. Rampelberg, C. Detavernier, L. Fang, Y. Jiang, K. Martens, I.P. Parkin, I. Papakonstantinou, Mater. Today Chem. 12(2019) 396-423. [5] S.-Y. Liao, X.-Y. Wang, H.-P. Huang, Y.-Y. Shi, Q.-F. Wang, Y.-G. Hu, P.-L. Zhu, R. Sun, C.-P. Wong, Y.-J. Wan, Chem. Eng. J. 464(2023) 142596. [6] W. Wang, K. Ran, X. Hou, Y. Huang, Z. Zhang, D. He, Y. Fang, S. Wang, Y. Liu, R. Zhao, X.-Y. Yang, W.Xue, Chem. Eng. J. 451(2023) 138692. [7] J.P. Cao, Y.S. Xue, N.F. Li, J.J. Gong, R.K. Kang, Y. Xu, J. Am. Chem.Soc. 141(2019) 19487-19497. [8] Y.-P. Xie, T.C.W. Mak, J. Am. Chem. Soc. 133(2011) 3760-3763. [9] S. Chakraborty, B.E. Petel, E. Schreiber, Ellen M. Matson, Nanoscale Adv. 3(2021) 1293-1318. [10] S.-Q. Li, L.-J. Li, Y.-Q. Tian, W.-L. Mu, R.-X. Meng, J. Yan, C. Liu, Polyoxometalates 3 (2024) 9140038. [11] L. Li, Y.-T. Yu, N.-N. Zhang, S.-H. Li, J.-G. Zeng, Y. Hua, H. Zhang, Coord. Chem. Rev. 500(2024) 215526. [12] L. Li, Y.-T. Yu, Y.Hua, X.-N. Li, H. Zhang, Inorg. Chem. Front. 10(2023) 1965. [13] J.-P. Cao, Y.-S. Xue, Z.-B. Hu, X.-M. Luo, C.-H. Cui, Y. Song, Y. Xu, Inorg. Chem. 58(2019) 2645-2651. [14] F. Shi, Y. Chen, C. Dong, J. Wang, C. Song, Y. Zhang, Z. Li, X. Huang, Molecules 28 (2023) 6843. [15] P. He, L. Ran, C. Li, W. Wang, C. Zhang, R. Ma, Y. Li, Y. Zhang, L. Deng, J. Yan, Inorg. Chem. 63(2024) 1613-1624. [16] P. He, L. Ran, R. Huang, R. Hu, R. Ma, Y. Li, Y. Liang, J. Yan, Polyoxometalates 1 (2022) 9140 0 08. [17] T. Guo, G. Xu, S. Tan, Z. Yang, H. Bu, G. Fang, H. Hou, J. Li, L. Pan, J. Alloy. Compd. 804(2019) 503-510. [18] T. Guo, G. Xu, S. Tan, N. Liu, J. Zhang, X. Zeng, J. Liang, Mater. Res. Bull. 95(2017) 354-360. [19] C. Li, L. Liang, Y. Yang, B. Zhang, G. Ji, Chem. Eng. J. 481(2024) 148354. [20] J. Lyu, Z.W. Liu, X.H. Wu, G.Y. Li, D. Fang, X.T. Zhang, ACS Nano 13 (2019) 2236-2245. [21] P. Gong, P. Buahom, M.-P. Tran, M. Saniei, C.B. Park, P. Pötschke, Carbon 93 (2015) 819-829. [22] P. Buahom, C. Wang, M. Alshrah, G. Wang, P. Gong, M.-P. Tran, C.B. Park, Nanoscale 12 (2020) 13064-13085. [23] X. Guan, S. Tan, L. Wang, Y. Zhao, G. Ji, ACS Nano 17 (2023) 20525-20536. [24] L. Liang, X. Yang, C. Li, R. Yu, B. Zhang, Y. Yang, G. Ji, Adv. Mater. 36(2024) 2313939. [25] Y. Wu, S. Tan, G. Fang, Y. Zhang, G. Ji, Adv. Funct. Mater. (2024), doi: 10.1002/adfm.202402193. [26] T. Xu, S. Tan, S. Li, T. Chen, Y. Wu, Y. Hao, C. Liu, G. Ji, Adv. Funct. Mater. (2024), doi: 10.10 02/adfm.240 0424. [27] L. Liang, C. Li, X. Yang, Z. Chen, B. Zhang, Y. Yang, G. Ji, Nano Lett. 24(2024) 2652-2660. [28] T. Zhou, L. Xie, Q. Han, X. Yang, L. Zhu, X. Cao, Chem. Eng. J. 445(2022) 136789. [29] M.I. Khan, Q. Chen, D.P. Goshorn, J. Zubieta, Inorg. Chem. 32(1993) 672-680. [30] K. Rajavel, Y. Hu, P. Zhu, R. Sun, C. Wong, Chem. Eng. J. 399(2020) 125791. [31] X. Li, Q.Liu L.Yang, W. Bai, H.Li, M. Wang, Q. Qian, Q. Yang, C. Xiao, Y. Xie, Adv. Mater. 35(2023) 2304532. [32] Y. Wu, D. Yang, Y. Zhang, S. Jiao, W. Tang, Z. Wang, N. Wu, Y. Wang, W. Zhong, A. Zhang, J. Hao, H.-L. Cai, X.S. Wu, Chem. Eng. J. 439(2022) 135640. [33] A. Minyaev, I. Denisov, V. Soroko, V. Konovalov, Russ. J. Appl. Chem. 59(1986) 309-313. [34] H. Zhu, G. Gao, M. Du, J. Zhou, K. Wang, W. Wu, X. Chen, Y. Li, P. Ma, W. Dong, F. Duan, M. Chen, G. Wu, J. Wu, H. Yang, S. Guo, Adv. Mater. 30(2018) 1707301. [35] Y.-W. Han, L.Ye, T.-J. Gong, Y. Fu, Angew. Chem. Int. Edit. 62(2023) e202306305. [36] Z.U.D. Babar, M.S. Anwar, M. Mumtaz, M. Iqbal, R.-K. Zheng, D. Akinwande, S. Rizwan, 2D Mater 7 (2020) 035012. [37] Y. Zhang, Z. Cui, B. Sa, N. Miao, J. Zhou, Z. Sun, Nanoscale Horiz. 7(2022) 276-287. [38] Y. Lian, W. Yang, C. Zhang, H. Sun, Z. Deng, W. Xu, L. Song, Z. Ouyang, Z. Wang, J. Guo, Y. Peng, Angew. Chem. Int. Edit. 59(2020) 286-294. [39] F. Shahzad, M. Alhabeb, C.B. Hatter, B. Anasori, S. Man Hong, C.M. Koo, Y. Gogotsi, Science 353 (2016) 1137-1140. [40] Z. Tang, L. Xu, C. Xie, L. Guo, L. Zhang, S. Guo, J. Peng, Nat. Commun. 14(2023) 5951. [41] W. Wei, X. Liu, W. Lu, H. Zhang, J. He, H. Wang, Y. Hou, ACS Appl. Mater. Inter- faces 11 (2019) 12752-12760. [42] P. He, R. Ma, C. Li, L. Ran, W. Yuan, Y. Han, L. Deng, J. Yan, Inorg. Chem. Front. 9(2022) 1931-1942. [43] L. Rao, Z. Liu, L. Wang, W. You, C. Yang, R. Zhang, X. Xiong, L. Yang, H. Zhang, J. Zhang, H. Lv, R. Che, Adv. Funct. Mater. 33(2023) 2306984. [44] J. Wang, L. Liu, S. Jiao, K. Ma, J. Lv, J. Yang, Adv. Funct. Mater. 30(2020) 2002595. [45] D. Kuang, S. Wang, L. Deng, W. Duan, G. Xiao, X. Sun, C. Chen, Inorg. Chem. 62(2023) 5487-5495. [46] Z.-X. Liu, H.-B. Yang, Z.-M. Han, W.-B. Sun, X.-X. Ge, J.-M. Huang, K.-P. Yang, D.-H. Li, Q.-F. Guan, S.-H. Yu, Nano Lett. 24(2024) 881-889. [47] J. Liang, J. Chen, H. Shen, K. Hu, B. Zhao, J. Kong, Chem. Mater. 33(2021) 1789-1798. [48] Y. Tong, M. He, Y. Zhou, X. Zhong, L. Fan, T. Huang, Q. Liao, Y. Wang, J. Mater. Sci.-Mater. Electron. 29(2018) 8078-8088. [49] Z. Jin, Y. Fang, X. Wang, G. Xu, M. Liu, S. Wei, C. Zhou, Y. Zhang, Y. Xu, J. Colloid Interface Sci. 537(2019) 306-315. [50] Q. Zhang, C. Li, Y. Chen, Z. Han, H. Wang, Z. Wang, D. Geng, W. Liu, Z. Zhang, Appl. Phys. Lett. 97(2010) 133115. [51] H. Niu, X. Tu, S. Zhang, Y. Li, H. Wang, G. Shao, R. Zhang, H. Li, B. Zhao, B. Fan, Chem. Eng. J. 446(2022) 137260. [52] L. Liang, G. Han, Y. Li, B. Zhao, B. Zhou, Y. Feng, J. Ma, Y. Wang, R. Zhang, C. Liu, ACS Appl. Mater. Interfaces 11 (2019) 25399-25409. [53] X. Li, X. Yin, M. Han, C. Song, H. Xu, Z. Hou, L. Zhang, L. Cheng, J. Mater. Chem. C 5 (2017) 4068-4074. [54] H. Yang, J. Dai, X. Liu, Y. Lin, J. Wang, L. Wang, F. Wang, Mater. Chem. Phys. 200(2017) 179-186. [55] B. Deng, Z. Xiang, J. Xiong, Z. Liu, L. Yu, W. Lu, Nano-Micro Lett. 12(2020) 55. [56] G. Wang, C. Li, D. Estevez, P. Xu, M. Peng, H. Wei, F. Qin, Nano-Micro Lett. 15(2023) 152. [57] X. Li, W. You, L. Wang, J. Liu, Z. Wu, K. Pei, Y. Li, R. Che, ACS Appl. Mater. Interfaces 11 (2019) 4 4536-4 454 4. [58] X. Zeng, X. Jiang, Y. Ning, F. Hu, B. Fan, J. Adv. Ceram. 12(2023) 1562-1576. [59] Q. An, D. Li, W. Liao, T. Liu, D. Joralmon, X. Li, J. Zhao, Adv. Mater. 35(2023) 2300659. [60] Y. Zhang, L. Zhang, L. Tang, R. Du, B. Zhang, ACS Nano 18 (2024) 8411-8422. [61] M. Yuan, H. Lv, H. Cheng, B. Zhao, G. Chen, J. Zhang, R. Che, Adv. Funct. Mater. 33(2023) 2302003. [62] W. Gu, S.J.H.Ong, Y. Shen, W.Guo, Y. Fang, G. Ji, Z.J. Xu, Adv. Sci. 9(2022) 2204165. [63] X. Chen, Z. Wang, M. Zhou, Y. Zhao, S. Tang, G. Ji, Chem. Eng. J. 452(2023) 139110. [64] L. Wu, J. Liu, X. Liu, P. Mou, H. Lv, R. Liu, J. Wen, J. Zhao, J. Li, G. Wang, Nano Lett. 24(2024) 3369-3377. [65] L. Chen, W. Chen, H. Tan, J. Li, X. Sang, E. Wang, J. Mater. Chem. A 4 (2016) 4125-4133. [66] X.-H. Li, H.Li, S.-L. Jiang, L. Yang, H.-Y. Li, Q.-L. Liu, W. Bai, Q. Zhang, C. Xiao, Y. Xie, ACS Catal. 13(2023) 7189-7198. [67] G. Chen, H. Liang, J. Yun, L. Zhang, H. Wu, J. Wang, Adv. Mater. 35(2023) 2305586. [68] G. Wang, T. Huo, Q. Deng, F. Yu, Y. Xia, H. Li, W. Hou, Appl. Catal. B-Environ. 310(2022) 121319. [69] X.-X. Li, T.Ji, J.-Y. Gao, W.-C. Chen, Y. Yuan, H.-Y. Sha, R. Faller, G.-G. Shan, K.-Z. Shao, X.-L. Wang, Z.-M. Su, Chem. Sci. 13(2022) 4573-4580. [70] L. Chen, W.-L. Chen, X.-L. Wang, Y.-G. Li, Z.-M. Su, E.-B. Wang, Chem. Soc. Rev. 48(2019) 260-284. [71] Q. Huang, Y. Zhang, S. Tan, Y. Wu, G. Ji, J. Colloid Interface Sci. 649(2023) 76-85. [72] J. Jing, H. Liu, X. Wang, Adv. Funct. Mater. 34(2024) 2309269. [73] X. Chen, S. Guo, S. Tan, J. Ma, T. Xu, Y. Wu, G. Ji, Carbon 213 (2023) 118313. [74] X. Guan, S. Tan, L. Wang, Y. Zhao, G. Ji, ACS Nano 17 (2023) 20525-20536. [75] Y. Zhang, K. Ruan, K. Zhou, J. Gu, Adv. Mater. 35(2023) 2211642. [76] S.-H. Kim, S.-Y. Lee, Y. Zhang, S.-J. Park, J. Gu, Adv. Sci. 10(2023) 2303104. [77] M. Chang, Q. Li, Z. Jia, W. Zhao, G. Wu, J. Mater. Sci.Technol. 148(2023) 150-170. [78] J. Ma a, Z. Luo, S. Tan, J. He, X. Guan, T. Xu, S. Guo, G. Ji, Carbon 218 (2024) 118771. |
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