Volume 7 Issue 5
Oct.  2022
Turn off MathJax
Article Contents
Xinyu Luo, Wenchao Peng, Yang Li, Fengbao Zhang, Xiaobin Fan. Understanding of the electrochemical behaviors of aqueous zinc–manganese batteries: Reaction processes and failure mechanisms. Green Energy&Environment, 2022, 7(5): 858-899. doi: 10.1016/j.gee.2021.08.006
Citation: Xinyu Luo, Wenchao Peng, Yang Li, Fengbao Zhang, Xiaobin Fan. Understanding of the electrochemical behaviors of aqueous zinc–manganese batteries: Reaction processes and failure mechanisms. Green Energy&Environment, 2022, 7(5): 858-899. doi: 10.1016/j.gee.2021.08.006

Understanding of the electrochemical behaviors of aqueous zinc–manganese batteries: Reaction processes and failure mechanisms

doi: 10.1016/j.gee.2021.08.006
  • As one of the most common cathode materials for aqueous zinc-ion batteries (AZIBs), manganese oxides have the advantages of abundant reserves, low cost, and low toxicity. However, the electrochemical mechanism at the cathode of aqueous zinc–manganese batteries (AZMBs) is complicated due to different electrode materials, electrolytes and working conditions. These complicated mechanisms severely limit the research progress of AZMBs system and the design of cells with better performance. Hence, the mechanism of AZMBs currently recognized by most researchers according to the classification of the main ions involved in the faradaic reaction is introduced in the review. Then a series of reasons that affect the electrochemical behavior of the battery are summarized. Finally, the failure mechanisms of AZMBs over prolonged cycling are discussed, and the current insufficient research areas of the system are explained, along with the direction of further research being prospected.

     

  • loading
  • [1]
    X. Fan, W. Sun, F. Meng, A. Xing and J. Liu, Green Energy Environ. 3 (2018) 2-19
    [2]
    L. Zhang, X. Wu, W. Qian, H. Zhang and S. Zhang, Green Energy Environ. 6 (2021) 5-8
    [3]
    J. Liu, C. Xu, Z. Chen, S. Ni and Z. X. Shen, Green Energy Environ. 3 (2018) 20-41
    [4]
    J. M. Tarascon and M. Armand, Nature 414 (2001) 359-367
    [5]
    J. B. Goodenough and Y. Kim, Chem. Mater. 22 (2010) 587-603
    [6]
    C. Gao, H. Liu, S. Bi, H. Li and C. Ma, Green Energy Environ. 6 (2021) 114-123
    [7]
    J. B. Goodenough and K.-S. Park, J. Am. Chem. Soc. 135 (2013) 1167-1176
    [8]
    X. Chen, Y. Zhu, W. Peng, Y. Li, G. Zhang, F. Zhang and X. Fan, J. Mater. Chem. A 5 (2017) 5880-5885
    [9]
    X. Chen, Y. Zhu, X. Zhu, W. Peng, Y. Li, G. Zhang, F. Zhang and X. Fan, ChemSusChem 11 (2018) 2677-2680
    [10]
    X. Zhu, X. Liang, X. Fan and X. Su, RSC Adv. 7 (2017) 38119-38124
    [11]
    J. Liang, Z. Zhou, Q. Zhang, X. Hu, W. Peng, Y. Li, F. Zhang and X. Fan, J. Power Sources 495 (2021) 229758
    [12]
    J. Huang, Z. Guo, Y. Ma, D. Bin, Y. Wang and Y. Xia, Small Methods 3 (2019) 1800272
    [13]
    M. Song, H. Tan, D. Chao and H. J. Fan, Adv. Funct. Mater. 28 (2018) 1802564
    [14]
    F. Wang, O. Borodin, T. Gao, X. Fan, W. Sun, F. Han, A. Faraone, J. A. Dura, K. Xu and C. Wang, Nat. Mater. 17 (2018) 543-549
    [15]
    L. Chen, Z. Yang, H. Qin, X. Zeng, J. Meng and H. Chen, Electrochim. Acta 317 (2019) 155-163
    [16]
    K. Lu, B. Song, Y. Zhang, H. Ma and J. Zhang, J. Mater. Chem. A 5 (2017) 23628-23633
    [17]
    M. Zhang, W. Wu, J. Luo, H. Zhang, J. Liu, X. Liu, Y. Yang and X. Lu, J. Mater. Chem. A 8 (2020) 11642-11648
    [18]
    H. He, H. Tong, X. Song, X. Song and J. Liu, J. Mater. Chem. A 8 (2020) 7836-7846
    [19]
    H. He and J. Liu, J. Mater. Chem. A 8 (2020) 22100-22110
    [20]
    N. Zhang, F. Cheng, Y. Liu, Q. Zhao, K. Lei, C. Chen, X. Liu and J. Chen, J. Am. Chem. Soc. 138 (2016) 12894-12901
    [21]
    W. Sun, F. Wang, S. Hou, C. Yang, X. Fan, Z. Ma, T. Gao, F. Han, R. Hu, M. Zhu and C. Wang, J. Am. Chem. Soc. 139 (2017) 9775-9778
    [22]
    H. Pan, Y. Shao, P. Yan, Y. Cheng, K. S. Han, Z. Nie, C. Wang, J. Yang, X. Li, P. Bhattacharya, K. T. Mueller and J. Liu, Nat. Energy 1 (2016) 16039
    [23]
    L. Wang, K.-W. Huang, J. Chen and J. Zheng, Sci. Adv. 5 (2019) eaax4279
    [24]
    L. Shan, Y. Yang, W. Zhang, H. Chen, G. Fang, J. Zhou and S. Liang, Energy Storage Mater. 18 (2019) 10-14
    [25]
    M. Ghosh, V. Vijayakumar and S. Kurungot, Energy Technol. 7 (2019) 1900442
    [26]
    J. Liu, W. Peng, Y. Li, F. Zhang and X. Fan, J. Mater. Chem. C 9 (2021) 6308-6315
    [27]
    H. Qin, Z. Yang, L. Chen, X. Chen and L. Wang, J. Mater. Chem. A 6 (2018) 23757-23765
    [28]
    T. Chen, X. Zhu, X. Chen, Q. Zhang, Y. Li, W. Peng, F. Zhang and X. Fan, J. Power Sources 477 (2020) 228652
    [29]
    J. Liu, P. Xu, J. Liang, H. Liu, W. Peng, Y. Li, F. Zhang and X. Fan, Chem. Eng. J. 389 (2020) 124405
    [30]
    M. Huang, J. Meng, Z. Huang, X. Wang and L. Mai, J. Mater. Chem. A 8 (2020) 6631-6637
    [31]
    L. Zhang, L. Chen, X. Zhou and Z. Liu, Adv. Energy Mater. 5 (2015) 1400930
    [32]
    R. Trocoli and F. La Mantia, ChemSusChem 8 (2015) 481-485
    [33]
    B. Haupler, C. Rossel, A. M. Schwenke, J. Winsberg, D. Schmidt, A. Wild and U. S. Schubert, NPG Asia Mater. 8 (2016) e283-e283
    [34]
    D. Kundu, P. Oberholzer, C. Glaros, A. Bouzid, E. Tervoort, A. Pasquarello and M. Niederberger, Chem. Mater. 30 (2018) 3874-3881
    [35]
    P. Liu, R. Lv, Y. He, B. Na, B. Wang and H. Liu, J. Power Sources 410 (2019) 137-142
    [36]
    Z. Tie, L. Liu, S. Deng, D. Zhao and Z. Niu, Angew. Chem. Int. Edit 59 (2020) 4920-4924
    [37]
    K. Sada, B. Senthilkumar and P. Barpanda, J. Mater. Chem. A 7 (2019) 23981-23988
    [38]
    G. Fang, J. Zhou, A. Pan and S. Liang, ACS Energy Lett. 3 (2018) 2480-2501
    [39]
    J. Ming, J. Guo, C. Xia, W. Wang and H. N. Alshareef, Mater. Sci. Eng. R 135 (2019) 58-84
    [40]
    X. Zeng, J. Hao, Z. Wang, J. Mao and Z. Guo, Energy Storage Mater. 20 (2019) 410-437
    [41]
    H. Li, L. Ma, C. Han, Z. Wang, Z. Liu, Z. Tang and C. Zhi, Nano Energy 62 (2019) 550-587
    [42]
    H. Liu, J.-G. Wang, Z. You, C. Wei, F. Kang and B. Wei, Mater. Today 42 (2021) 73-98
    [43]
    R. Demir-Cakan, M. R. Palacin and L. Croguennec, J. Mater. Chem. A 7 (2019) 20519-20539
    [44]
    B. Tang, L. Shan, S. Liang and J. Zhou, Energy Environ. Sci. 12 (2019) 3288-3304
    [45]
    L. E. Blanc, D. Kundu and L. F. Nazar, Joule 4 (2020) 771-799
    [46]
    X. Liu, J. Yi, K. Wu, Y. Jiang, Y. Liu, B. Zhao, W. Li and J. Zhang, Nanotechnology 31 (2020) 122001
    [47]
    Y. Zhao, Y. Zhu and X. Zhang, InfoMat 2 (2019) 237-260
    [48]
    J. Song, K. Xu, N. Liu, D. Reed and X. Li, Mater. Today 45 (2021) 191-212
    [49]
    B. Yong, D. Ma, Y. Wang, H. Mi, C. He and P. Zhang, Adv. Energy Mater. 10 (2020) 2002354
    [50]
    L. Chen, Q. An and L. Mai, Adv. Mater. Interfaces 6 (2019) 1900387
    [51]
    D. Selvakumaran, A. Pan, S. Liang and G. Cao, J. Mater. Chem. A 7 (2019) 18209-18236
    [52]
    Y. Shen, B. Liu, X. Liu, J. Liu, J. Ding, C. Zhong and W. Hu, Energy Storage Mater. 34 (2021) 461-474
    [53]
    T. Zhang, Y. Tang, S. Guo, X. Cao, A. Pan, G. Fang, J. Zhou and S. Liang, Energy Environ. Sci. 13 (2020) 4625-4665
    [54]
    S. Huang, J. Zhu, J. Tian and Z. Niu, Chem.-Eur. J. 25 (2019) 14480-14494
    [55]
    S. Guo, L. Qin, T. Zhang, M. Zhou, J. Zhou, G. Fang and S. Liang, Energy Storage Mater. 34 (2021) 545-562
    [56]
    Y. Tang, S. Zheng, Y. Xu, X. Xiao, H. Xue and H. Pang, Energy Storage Mater. 12 (2018) 284-309
    [57]
    W. Shi, W. S. V. Lee and J. Xue, ChemSusChem 14 (2021) 1634-1658
    [58]
    M. Wang, X. Zheng, X. Zhang, D. Chao, S. Z. Qiao, H. N. Alshareef, Y. Cui and W. Chen, Adv. Energy Mater. 11 (2020) 2002904
    [59]
    D. Wang, L. Wang, G. Liang, H. Li, Z. Liu, Z. Tang, J. Liang and C. Zhi, ACS Nano 13 (2019) 10643-10652
    [60]
    Y. Jiang, D. Ba, Y. Li and J. Liu, Adv. Sci. 7 (2020) 1902795
    [61]
    H. Chen, S. Cai, Y. Wu, W. Wang, M. Xu and S.-J. Bao, Mater. Today Energy 20 (2021) 100646
    [62]
    F. Mo, G. Liang, Q. Meng, Z. Liu, H. Li, J. Fan and C. Zhi, Energy Environ. Sci. 12 (2019) 706-715
    [63]
    C. Xu, H. Du, B. Li, F. Kang and Y. Zeng, Electrochem. Solid-state Lett. 12 (2009) A61
    [64]
    M. H. Alfaruqi, V. Mathew, J. Gim, S. Kim, J. Song, J. P. Baboo, S. H. Choi and J. Kim, Chem. Mater. 27 (2015) 3609-3620
    [65]
    B. Wu, G. Zhang, M. Yan, T. Xiong, P. He, L. He, X. Xu and L. Mai, Small 14 (2018) e1703850
    [66]
    N. Zhang, F. Cheng, J. Liu, L. Wang, X. Long, X. Liu, F. Li and J. Chen, Nat. Commun. 8 (2017) 405
    [67]
    J. C. Knight, S. Therese and A. Manthiram, J. Mater. Chem. A 3 (2015) 21077-21082
    [68]
    S. Islam, M. H. Alfaruqi, D. Y. Putro, S. Park, S. Kim, S. Lee, M. S. Ahmed, V. Mathew, Y. K. Sun, J. Y. Hwang and J. Kim, Adv. Sci. 8 (2021) 2002636
    [69]
    C. Xu, B. Li, H. Du and F. Kang, Angew. Chem. Int. Edit 51 (2012) 933-935
    [70]
    B. Lee, H. R. Lee, H. Kim, K. Y. Chung, B. W. Cho and S. H. Oh, Chem. Commun. 51 (2015) 9265-9268
    [71]
    B. Lee, C. S. Yoon, H. R. Lee, K. Y. Chung, B. W. Cho and S. H. Oh, Sci. Rep. 4 (2014) 6066
    [72]
    M. Villalobos, B. Lanson, A. Manceau, B. Toner and G. Sposito, Am. Mineral. 91 (2006) 489-502
    [73]
    K. D. Kwon, K. Refson and G. Sposito, Geochim. Cosmochim. Ac. 73 (2009) 1273-1284
    [74]
    B. Toner, A. Manceau, S. M. Webb and G. Sposito, Geochim. Cosmochim. Ac. 70 (2006) 27-43
    [75]
    M. H. Alfaruqi, J. Gim, S. Kim, J. Song, J. Jo, S. Kim, V. Mathew and J. Kim, J. Power Sources 288 (2015) 320-327
    [76]
    B. Lee, H. R. Seo, H. R. Lee, C. S. Yoon, J. H. Kim, K. Y. Chung, B. W. Cho and S. H. Oh, ChemSusChem 9 (2016) 2948-2956
    [77]
    X. Guo, J. Zhou, C. Bai, X. Li, G. Fang and S. Liang, Mater. Today Energy 16 (2020) 100396
    [78]
    X. Zeng, J. Liu, J. Mao, J. Hao, Z. Wang, S. Zhou, C. D. Ling and Z. Guo, Adv. Energy Mater. 10 (2020) 1904163
    [79]
    C. Zhong, B. Liu, J. Ding, X. Liu, Y. Zhong, Y. Li, C. Sun, X. Han, Y. Deng, N. Zhao and W. Hu, Nat. Energy 5 (2020) 440-449
    [80]
    G. Li, W. Chen, H. Zhang, Y. Gong, F. Shi, J. Wang, R. Zhang, G. Chen, Y. Jin, T. Wu, Z. Tang and Y. Cui, Adv. Energy Mater. 10 (2020) 1902085
    [81]
    M. Han, J. Huang, S. Liang, L. Shan, X. Xie, Z. Yi, Y. Wang, S. Guo and J. Zhou, iScience 23 (2020) 100797
    [82]
    G. Fang, C. Zhu, M. Chen, J. Zhou, B. Tang, X. Cao, X. Zheng, A. Pan and S. Liang, Adv. Funct. Mater. 29 (2019) 1808375
    [83]
    J. Yang, J. Cao, Y. Peng, W. Yang, S. Barg, Z. Liu, I. A. Kinloch, M. A. Bissett and R. A. W. Dryfe, ChemSusChem 13 (2020) 4103-4110
    [84]
    T. Takashima, K. Hashimoto and R. Nakamura, J. Am. Chem. Soc. 134 (2012) 18153-18156
    [85]
    W. K. Pang, V. K. Peterson, N. Sharma, C. Zhang and Z. Guo, J. Phys. Chem. C 118 (2014) 3976-3983
    [86]
    C. Ouyang, X. Zeng, Z. Sljivancanin and A. Baldereschi, J. Phys. Chem. C 114 (2010) 4756-4759
    [87]
    J. E. Greedan, N. Raju, A. Wills, C. Morin, S. Shaw and J. Reimers, Chem. Mater. 10 (1998) 3058-3067
    [88]
    J. C. Hunter, J. Solid State Chem. 39 (1981) 142-147
    [89]
    D. H. Jang, Y. J. Shin and S. M. Oh, J. Electrochem. Soc. 143 (1996) 2204
    [90]
    C. Xie, T. Li, C. Deng, Y. Song, H. Zhang and X. Li, Energy Environ. Sci. 13 (2020) 135-143
    [91]
    G. Liang, F. Mo, H. Li, Z. Tang, Z. Liu, D. Wang, Q. Yang, L. Ma and C. Zhi, Adv. Energy Mater. 9 (2019) 1901838
    [92]
    D. Chao, W. Zhou, C. Ye, Q. Zhang, Y. Chen, L. Gu, K. Davey and S. Z. Qiao, Angew. Chem. Int. Edit 58 (2019) 7823-7828
    [93]
    J. Huang, J. Zeng, K. Zhu, R. Zhang and J. Liu, Nano Micro Lett. 12 (2020) 110
    [94]
    Q. Zhao, X. Chen, Z. Wang, L. Yang, R. Qin, J. Yang, Y. Song, S. Ding, M. Weng, W. Huang, J. Liu, W. Zhao, G. Qian, K. Yang, Y. Cui, H. Chen and F. Pan, Small 15 (2019) e1904545
    [95]
    N. Qiu, H. Chen, Z. Yang, S. Sun and Y. Wang, Electrochim. Acta 272 (2018) 154-160
    [96]
    S. J. Kim, D. Wu, N. Sadique, C. D. Quilty, L. Wu, A. C. Marschilok, K. J. Takeuchi, E. S. Takeuchi and Y. Zhu, Small 16 (2020) 2005406
    [97]
    F. Wan, L. Zhang, X. Dai, X. Wang, Z. Niu and J. Chen, Nat. Commun. 9 (2018) 1656
    [98]
    Y. Jin, L. Zou, L. Liu, M. H. Engelhard, R. L. Patel, Z. Nie, K. S. Han, Y. Shao, C. Wang, J. Zhu, H. Pan and J. Liu, Adv. Mater. 31 (2019) e1900567
    [99]
    A. K. Katz, J. P. Glusker, S. A. Beebe and C. W. Bock, J. Am. Chem. Soc. 118 (1996) 5752-5763
    [100]
    Y. Liu, J. Zhi, M. Sedighi, M. Han, Q. Shi, Y. Wu and P. Chen, Adv. Energy Mater. 10 (2020) 2002578
    [101]
    M. Chamoun, W. R. Brant, C.-W. Tai, G. Karlsson and D. Noreus, Energy Storage Mater. 15 (2018) 351-360
    [102]
    S. Zhao, B. Han, D. Zhang, Q. Huang, L. Xiao, L. Chen, D. G. Ivey, Y. Deng and W. Wei, J. Mater. Chem. A 6 (2018) 5733-5739
    [103]
    D. Simon, R. Morton and J. Gislason, Adv. X-ray Anal. 47 (2004) 267-280
    [104]
    M. Liu, Q. Zhao, H. Liu, J. Yang, X. Chen, L. Yang, Y. Cui, W. Huang, W. Zhao, A. Song, Y. Wang, S. Ding, Y. Song, G. Qian, H. Chen and F. Pan, Nano Energy 64 (2019) 103942
    [105]
    J. Lee, J. B. Ju, W. I. Cho, B. W. Cho and S. H. Oh, Electrochim. Acta 112 (2013) 138-143
    [106]
    Z. Hu, M. Chen, H. Zhang, L. Huang, K. Liu, Y. Ling, H. Zhou, Z. Jiang, G. Feng and J. Zhou, J. Mater. Chem. A 7 (2019) 7118-7127
    [107]
    M. H. Alfaruqi, S. Islam, D. Y. Putro, V. Mathew, S. Kim, J. Jo, S. Kim, Y.-K. Sun, K. Kim and J. Kim, Electrochim. Acta 276 (2018) 1-11
    [108]
    C. Zhu, G. Fang, J. Zhou, J. Guo, Z. Wang, C. Wang, J. Li, Y. Tang and S. Liang, J. Mater. Chem. A 6 (2018) 9677-9683
    [109]
    L. Wang, X. Cao, L. Xu, J. Chen and J. Zheng, ACS Sustain. Chem. Eng. 6 (2018) 16055-16063
    [110]
    J. Hao, J. Mou, J. Zhang, L. Dong, W. Liu, C. Xu and F. Kang, Electrochim. Acta 259 (2018) 170-178
    [111]
    Q. Tan, X. Li, B. Zhang, X. Chen, Y. Tian, H. Wan, L. Zhang, L. Miao, C. Wang, Y. Gan, J. Jiang, Y. Wang and H. Wang, Adv. Energy Mater. 10 (2020) 2001050
    [112]
    C. Wei, C. Xu, B. Li, H. Du and F. Kang, J. Phys. Chem. Solids 73 (2012) 1487-1491
    [113]
    O. Ghodbane, J. L. Pascal and F. Favier, ACS Appl. Mater. Inter. 1 (2009) 1130-1139
    [114]
    S. Devaraj and N. Munichandraiah, J. Phys. Chem. C 112 (2008) 4406-4417
    [115]
    G. G. Yadav, D. Turney, J. Huang, X. Wei and S. Banerjee, ACS Energy Lett. 4 (2019) 2144-2146
    [116]
    G. Zhu, L. Wang, H. Lin, L. Ma, P. Zhao, Y. Hu, T. Chen, R. Chen, Y. Wang, Z. Tie, J. Liu and Z. Jin, Adv. Funct. Mater. 28 (2018) 1800003
    [117]
    C. Zhu, G. Fang, S. Liang, Z. Chen, Z. Wang, J. Ma, H. Wang, B. Tang, X. Zheng and J. Zhou, Energy Storage Mater. 24 (2020) 394-401
    [118]
    J. Wang, J.-G. Wang, H. Liu, Z. You, C. Wei and F. Kang, J. Power Sources 438 (2019) 226951
    [119]
    Z. You, H. Liu, J. Wang, L. Ren and J.-G. Wang, Appl. Surf. Sci. 514 (2020) 145949
    [120]
    F. W. Fenta, B. W. Olbasa, M.-C. Tsai, M. A. Weret, T. A. Zegeye, C.-J. Huang, W.-H. Huang, T. S. Zeleke, N. A. Sahalie, C.-W. Pao, S.-h. Wu, W.-N. Su, H. Dai and B. J. Hwang, J. Mater. Chem. A 8 (2020) 17595-17607
    [121]
    B. Jiang, C. Xu, C. Wu, L. Dong, J. Li and F. Kang, Electrochim. Acta 229 (2017) 422-428
    [122]
    Y. Zeng, X. Zhang, Y. Meng, M. Yu, J. Yi, Y. Wu, X. Lu and Y. Tong, Adv Mater 29 (2017) 1700274
    [123]
    J. Wang, J. G. Wang, X. Qin, Y. Wang, Z. You, H. Liu and M. Shao, ACS Appl. Mater. Inter. 12 (2020) 34949-34958
    [124]
    T. Xiong, Z. G. Yu, H. Wu, Y. Du, Q. Xie, J. Chen, Y. W. Zhang, S. J. Pennycook, W. S. V. Lee and J. Xue, Adv. Energy Mater. 9 (2019) 1803815
    [125]
    S.-H. Kang, J. B. Goodenough and L. K. Rabenberg, Chem. Mater. 13 (2001) 1758-1764
    [126]
    H. D. Yoo, I. Shterenberg, Y. Gofer, G. Gershinsky, N. Pour and D. Aurbach, Energy Environ. Sci. 6 (2013) 2265
    [127]
    Y. Li, S. Wang, J. R. Salvador, J. Wu, B. Liu, W. Yang, J. Yang, W. Zhang, J. Liu and J. Yang, Chem. Mater. 31 (2019) 2036-2047
    [128]
    Z. Wang, H. Li, Z. Tang, Z. Liu, Z. Ruan, L. Ma, Q. Yang, D. Wang and C. Zhi, Adv. Funct. Mater. 28 (2018) 1804560
    [129]
    Y. Li, K. W. Wong, Q. Dou, W. Zhang and K. M. Ng, ACS Appl. Energ. Mater. 1 (2018) 2664-2670
    [130]
    S.-D. Han, S. Kim, D. Li, V. Petkov, H. D. Yoo, P. J. Phillips, H. Wang, J. J. Kim, K. L. More, B. Key, R. F. Klie, J. Cabana, V. R. Stamenkovic, T. T. Fister, N. M. Markovic, A. K. Burrell, S. Tepavcevic and J. T. Vaughey, Chem. Mater. 29 (2017) 4874-4884
    [131]
    D. Kundu, S. Hosseini Vajargah, L. Wan, B. Adams, D. Prendergast and L. F. Nazar, Energy Environ. Sci. 11 (2018) 881-892
    [132]
    T. Zhang, Y. Tang, G. Fang, C. Zhang, H. Zhang, X. Guo, X. Cao, J. Zhou, A. Pan and S. Liang, Adv. Funct. Mater. 30 (2020) 2002711
    [133]
    S. Bi, Y. Wu, A. Cao, J. Tian, S. Zhang and Z. Niu, Mater. Today Energy 18 (2020) 100548
    [134]
    Y. Xia, D. Zhu, S. Si, D. Li and S. Wu, J. Power Sources 283 (2015) 125-131
    [135]
    D. Wang, H. Li, Z. Liu, Z. Tang, G. Liang, F. Mo, Q. Yang, L. Ma and C. Zhi, Small 14 (2018) 1803978
    [136]
    K. Wang, X. Zhang, J. Hang, X. Zhang, X. Sun, C. Li, W. Liu, Q. Li and Y. Ma, ACS Appl. Mater. Inter. 10 (2018) 24573-24582
    [137]
    Z. Wang, Z. Ruan, Z. Liu, Y. Wang, Z. Tang, H. Li, M. Zhu, T. F. Hung, J. Liu, Z. Shi and C. Zhi, J. Mater. Chem. A 6 (2018) 8549-8557
    [138]
    Z. Liu, D. Wang, Z. Tang, G. Liang, Q. Yang, H. Li, L. Ma, F. Mo and C. Zhi, Energy Storage Mater. 23 (2019) 636-645
    [139]
    H.-W. Zhu, J. Ge, Y.-C. Peng, H.-Y. Zhao, L.-A. Shi and S.-H. Yu, Nano Res. 11 (2018) 1554-1562
    [140]
    C. Zhang, J. Holoubek, X. Wu, A. Daniyar, L. Zhu, C. Chen, D. P. Leonard, I. A. Rodriguez-Perez, J. X. Jiang, C. Fang and X. Ji, Chem. Commun. 54 (2018) 14097-14099
    [141]
    A. R. Mainar, O. Leonet, M. Bengoechea, I. Boyano, I. de Meatza, A. Kvasha, A. Guerfi and J. Alberto Blazquez, Int. J. Energ. Res. 40 (2016) 1032-1049
    [142]
    J. Garche, C. Dyer, P. Moseley, Z. Ogumi, D. Rand, B. Scrosati (Eds.), Encyclopedia of Electrochemical Power Sources, Elsevier B.V., Amsterdam, 2009, pp. 454-468
    [143]
    G. Liang, F. Mo, D. Wang, X. Li, Z. Huang, H. Li and C. Zhi, Energy Storage Mater. 25 (2020) 86-92
    [144]
    L. Xu, S. Tang, Y. Cheng, K. Wang, J. Liang, C. Liu, Y.-C. Cao, F. Wei and L. Mai, Joule 2 (2018) 1991-2015
    [145]
    M. Minakshi, P. Singh, T. B. Issa, S. Thurgate and R. D. Marco, J. Power Sources 138 (2004) 319-322
    [146]
    M. Ghosh, V. Vijayakumar, B. Anothumakkool and S. Kurungot, ACS Sustain. Chem. Eng. 8 (2020) 5040-5049
    [147]
    G. Kasiri, R. Trocoli, A. Bani Hashemi and F. La Mantia, Electrochim. Acta 222 (2016) 74-83
    [148]
    M. S. Chae, J. W. Heo, H. H. Kwak, H. Lee and S.-T. Hong, J. Power Sources 337 (2017) 204-211
    [149]
    C. Xu, H. Du, B. Li, F. Kang and Y. Zeng, J. Electrochem. Soc. 2009, 156 (2009) A435
    [150]
    C. Xu, F. Kang, B. Li and H. Du, J. Mater. Res. 25 (2011) 1421-1432
    [151]
    G. M. Nolis, A. Adil, H. D. Yoo, L. Hu, R. D. Bayliss, S. H. Lapidus, L. Berkland, P. J. Phillips, J. W. Freeland, C. Kim, R. F. Klie and J. Cabana, J. Phys. Chem. C 2018, 122 (2018) 4182-4188
    [152]
    N. S. Venkata Narayanan, B. V. Ashokraj and S. Sampath, J. Colloid Interf. Sci. 342 (2010) 505-512
    [153]
    Z. Peng, Q. Wei, S. Tan, P. He, W. Luo, Q. An and L. Mai, Chem. Commun. 54 (2018) 4041-4044
    [154]
    D. Kundu, B. D. Adams, V. Duffort, S. H. Vajargah and L. F. Nazar, Nat. Energy 1 (2016) 16119
    [155]
    G. Li, Z. Yang, Y. Jiang, C. Jin, W. Huang, X. Ding and Y. Huang, Nano Energy 25 (2016) 211-217
    [156]
    B. Zhang, Y. Liu, X. Wu, Y. Yang, Z. Chang, Z. Wen and Y. Wu, Chem. Commun. 50 (2014) 1209-1211
    [157]
    C. Y. Chen, K. Matsumoto, K. Kubota, R. Hagiwara and Q. Xu, Adv. Energy Mater. 9 (2019) 1900196
    [158]
    R. J. Wilcox, B. P. Losey, J. C. Folmer, J. D. Martin, M. Zeller and R. Sommer, Inorg. Chem. 54 (2015) 1109-1119
    [159]
    J. Zhao, Y. Li, X. Peng, S. Dong, J. Ma, G. Cui and L. Chen, Electrochem. Commun. 69 (2016) 6-10
    [160]
    D. Irish, B. McCarroll and T. Young, J. Chem. Phys. 39 (1963) 3436-3444
    [161]
    J. Huang, Z. Wang, M. Hou, X. Dong, Y. Liu, Y. Wang and Y. Xia, Nat. Commun. 9 (2018) 2906
    [162]
    Z. Liu, T. Cui, G. Pulletikurthi, A. Lahiri, T. Carstens, M. Z. Liu, T. Cui, G. Pulletikurthi, A. Lahiri, T. Carstens, M. Olschewski and F. Endres, Angew. Chem. Int. Edit 55 (2016) 2889-2893
    [163]
    D. Chao, C. Ye, F. Xie, W. Zhou, Q. Zhang, Q. Gu, K. Davey, L. Gu and S. Z. Qiao, Adv. Mater. 32 (2020) e2001894
    [164]
    Z. Hou, X. Zhang, X. Li, Y. Zhu, J. Liang and Y. Qian, J. Mater. Chem. A 5 (2017) 730-738
    [165]
    Q. Nian, J. Wang, S. Liu, T. Sun, S. Zheng, Y. Zhang, Z. Tao and J. Chen, Angew. Chem. Int. Edit 58 (2019) 16994-16999
    [166]
    A. J. Gibson, B. Johannessen, Y. Beyad, J. Allen and S. W. Donne, J. Electrochem. Soc. 163 (2016) H305-H312
    [167]
    Y. Zhang, S. Deng, M. Luo, G. Pan, Y. Zeng, X. Lu, C. Ai, Q. Liu, Q. Xiong, X. Wang, X. Xia and J. Tu, Small 15 (2019) e1905452
    [168]
    G. Du, J. Wang, Z. Guo, Z. Chen and H. Liu, Mater. Lett. 65 (2011) 1319-1322
    [169]
    G. G. Yadav, J. W. Gallaway, D. E. Turney, M. Nyce, J. Huang, X. Wei and S. Banerjee, Nat. Commun. 8 (2017) 14424
    [170]
    J. Kasnatscheew, M. Evertz, B. Streipert, R. Wagner, R. Klopsch, B. Vortmann, H. Hahn, S. Nowak, M. Amereller, A. C. Gentschev, P. Lamp and M. Winter, Phys. Chem. Chem. Phys. 18 (2016) 3956-3965
    [171]
    Y. Huang, J. Mou, W. Liu, X. Wang, L. Dong, F. Kang and C. Xu, Nano Micro Lett. 11 (2019) 49
    [172]
    X. Shen, X. Wang, Y. Zhou, Y. Shi, L. Zhao, H. Jin, J. Di and Q. Li, Adv. Funct. Mater. 31 (2021) 2101579
    [173]
    H. Tang, Y. Yin, Y. Huang, J. Wang, L. Liu, Z. Qu, H. Zhang, Y. Li, M. Zhu and O. G. Schmidt, ACS Energy Lett. 6 (2021) 1859-1868
    [174]
    A. Biswal, B. Chandra Tripathy, K. Sanjay, T. Subbaiah and M. Minakshi, RSC Adv. 5 (2015) 58255-58283
    [175]
    V. Soundharrajan, B. Sambandam, S. Kim, V. Mathew, J. Jo, S. Kim, J. Lee, S. Islam, K. Kim, Y.-K. Sun and J. Kim, ACS Energy Lett. 3 (2018) 1998-2004
    [176]
    R. Thirunakaran, A. Sivashanmugam, S. Gopukumar and R. Rajalakshmi, J. Power Sources 187 (2009) 565-574
    [177]
    M. Manickam, P. Singh, T. B. Issa, S. Thurgate and R. De Marco, J. Power Sources 130 (2004) 254-259
    [178]
    M. Minakshi, P. Singh, T. B. Issa, S. Thurgate and R. De Marco, J. Power Sources 153 (2006) 165-169
    [179]
    J. S. Ko, M. B. Sassin, J. F. Parker, D. R. Rolison and Jeffrey W. Long, Sustain. Energy Fuels 2 (2018) 626-636
    [180]
    N. Li, G. Li, C. Li, H. Yang, G. Qin, X. Sun, F. Li and H. M. Cheng, ACS Appl. Mater. Inter. 12 (2020) 13790-13796
    [181]
    H. Jiang, Z. Wei, L. Ma, Y. Yuan, J. J. Hong, X. Wu, D. P. Leonard, J. Holoubek, J. J. Razink, W. F. Stickle, F. Du, T. Wu, J. Lu and X. Ji, Angew. Chem. Int. Edit 58 (2019) 5286-5291
    [182]
    S. Wang, Z. Yuan, X. Zhang, S. Bi, Z. Zhou, J. Tian, Q. Zhang and Z. Niu, Angew. Chem. Int. Edit 60 (2021) 7056-7060
    [183]
    N. D. Ingale, J. W. Gallaway, M. Nyce, A. Couzis and S. Banerjee, J. Power Sources 2015, 276, 7-18
    [184]
    C. Ling, R. Zhang, T. S. Arthur and F. Mizuno, Chem. Mater. 27 (2015) 5799-5807
    [185]
    B. J. Hertzberg, A. Huang, A. Hsieh, M. Chamoun, G. Davies, J. K. Seo, Z. Zhong, M. Croft, C. Erdonmez, Y. S. Meng and D. Steingart, Chem. Mater. 28 (2016) 4536-4545
    [186]
    R. Liang, J. Fu, Y.-P. Deng, Y. Pei, M. Zhang, A. Yu and Z. Chen, Energy Storage Mater. 36 (2020) 478-484
    [187]
    W. Xiong, D. Yang, T. K. A. Hoang, M. Ahmed, J. Zhi, X. Qiu and P. Chen, Energy Storage Mater. 15 (2018) 131-138
    [188]
    V. Augustyn, J. Come, M. A. Lowe, J. W. Kim, P. L. Taberna, S. H. Tolbert, H. D. Abruna, P. Simon and B. Dunn, Nat. Mater. 12 (2013) 518-522
    [189]
    H. S. Kim, J. B. Cook, H. Lin, J. S. Ko, S. H. Tolbert, V. Ozolins and B. Dunn, Nat. Mater. 16 (2017) 454-460
    [190]
    H. Lindstrom, S. Sodergren, A. Solbrand, H. Rensmo, J. Hjelm, A. Hagfeldt and S.-E. Lindquist, J. Phys. Chem. B 101 (1997) 7717-7722
    [191]
    J. Wang, J. Polleux, J. Lim and B. Dunn, J. Phys. Chem. C 111 (2007) 14925-14931
    [192]
    T. Brezesinski, J. Wang, J. Polleux, B. Dunn and S. H. Tolbert, J. Am. Chem. Soc. 131 (2009) 1802-1809
    [193]
    T. Brezesinski, J. Wang, S. H. Tolbert and B. Dunn, Nat. Mater. 9 (2010) 146-151
    [194]
    D. Chao, C. Zhu, P. Yang, X. Xia, J. Liu, J. Wang, X. Fan, S. V. Savilov, J. Lin, H. J. Fan and Z. X. Shen, Nat. Commun. 7 (2016) 12122
    [195]
    X. Zhu, C. S. Ong, X. Xu, B. Hu, J. Shang, H. Yang, S. Katlakunta, Y. Liu, X. Chen, L. Pan, J. Ding and R. W. Li, Sci. Rep. 3 (2013) 1084
    [196]
    H. Xia, L. Lu, Y. S. Meng and G. Ceder, J. Electrochem. Soc. 154 (2007) A337
    [197]
    Q. Nian, T. Sun, S. Liu, H. Du, X. Ren and Z. Tao, Chem. Eng. J. 423 (2021) 130253
    [198]
    T. Deng, W. Zhang, H. Zhang and W. Zheng, Energy Technol. 6 (2018) 605-612
    [199]
    H. Xu, T. Bai, H. Chen, F. Guo, J. Xi, T. Huang, S. Cai, X. Chu, J. Ling, W. Gao, Z. Xu and C. Gao, Energy Storage Mater. 17 (2019) 38-45
    [200]
    D. W. McOwen, D. M. Seo, O. Borodin, J. Vatamanu, P. D. Boyle and W. A. Henderson, Energy Environ. Sci. 7 (2014) 416-426
    [201]
    M. Chen, W. Zhou, A. Wang, A. Huang, J. Chen, J. Xu and C.-P. Wong, J. Mater. Chem. A 8 (2020) 6828-6841
    [202]
    H. Jiang, W. Shin, L. Ma, J. J. Hong, Z. Wei, Y. Liu, S. Zhang, X. Wu, Y. Xu, Q. Guo, M. A. Subramanian, W. F. Stickle, T. Wu, J. Lu and X. Ji, Adv. Energy Mater. 10 (2020) 2000968
    [203]
    C. Lu and X. Chen, Nano Lett. 20 (2020) 1907-1914
    [204]
    N. Wang, X. Dong, B. Wang, Z. Guo, Z. Wang, R. Wang, X. Qiu and Y. Wang, Angew. Chem. Int. Edit 59 (2020) 14577-14583
    [205]
    X. Zhu, Z. Cao, W. Wang, H. Li, J. Dong, S. Gao, D. Xu, L. Li, J. Shen and M. Ye, ACS Nano 15 (2021) 2971-2983
    [206]
    H. Zhang, Q. Liu, J. Wang, K. Chen, D. Xue, J. Liu and X. Lu, J. Mater. Chem. A 7 (2019) 22079-22083
    [207]
    B. Lin, X. Zhu, L. Fang, X. Liu, S. Li, T. Zhai, L. Xue, Q. Guo, J. Xu and H. Xia, Adv. Mater. 31 (2019) e1900060
    [208]
    Y. Fu, Q. Wei, G. Zhang, X. Wang, J. Zhang, Y. Hu, D. Wang, L. Zuin, T. Zhou, Y. Wu and S. Sun, Adv. Energy Mater. 8 (2018) 1801445
    [209]
    J. Long, J. Gu, Z. Yang, J. Mao, J. Hao, Z. Chen and Z. Guo, J. Mater. Chem. A 7 (2019) 17854-17866
    [210]
    S. Islam, M. H. Alfaruqi, J. Song, S. Kim, D. T. Pham, J. Jo, S. Kim, V. Mathew, J. P. Baboo, Z. Xiu and J. Kim, J. Energy Chem. 26 (2017) 815-819
    [211]
    Y. Huang, J. Liu, Q. Huang, Z. Zheng, P. Hiralal, F. Zheng, D. Ozgit, S. Su, S. Chen, P.-H. Tan, S. Zhang and H. Zhou, npj Flexible Electronics 2 (2018) 21
    [212]
    M. Yan, F. Wang, C. Han, X. Ma, X. Xu, Q. An, L. Xu, C. Niu, Y. Zhao, X. Tian, P. Hu, H. Wu and L. Mai, J. Am. Chem. Soc. 135 (2013) 18176-18182
    [213]
    S. Chen, J. Zhu, X. Wu, Q. Han and X. Wang, ACS Nano 4 (2010) 2822-2830
    [214]
    Z. Zhou, L. Wang, J. Liang, C. Zhang, W. Peng, Y. Li, G. Zhang, F. Zhang and X. Fan, J. Mater. Chem. C 9 (2021) 1326-1332
    [215]
    J. Wang, J. G. Wang, H. Liu, Z. You, Z. Li, F. Kang and B. Wei, Adv. Funct. Mater. 31 (2020) 2007397
    [216]
    D. Xu, B. Li, C. Wei, Y.-B. He, H. Du, X. Chu, X. Qin, Q.-H. Yang and F. Kang, Electrochim. Acta 133 (2014) 254-261
    [217]
    Y. Liu, X. Chi, Q. Han, Y. Du, J. Huang, Y. Liu and J. Yang, J. Power Sources 443 (2019) 227244
    [218]
    S. Luo, L. Xie, F. Han, W. Wei, Y. Huang, H. Zhang, M. Zhu, O. G. Schmidt and L. Wang, Adv. Funct. Mater. 29 (2019) 1901336
    [219]
    Q. Zhao, A. Song, S. Ding, R. Qin, Y. Cui, S. Li and F. Pan, Adv. Mater. 32 (2020) 2002450
    [220]
    S. Guo, S. Liang, B. Zhang, G. Fang, D. Ma and J. Zhou, ACS Nano 13 (2019) 13456-13464
    [221]
    J. S. Kim, K. Kim, W. Cho, W. H. Shin, R. Kanno and J. W. Choi, Nano Lett. 12 (2012) 6358-6365
    [222]
    D. Xu, H. Wang, F. Li, Z. Guan, R. Wang, B. He, Y. Gong and X. Hu, Adv. Mater. Interfaces 6 (2019) 1801506
    [223]
    H. Zhang, J. Wang, Q. Liu, W. He, Z. Lai, X. Zhang, M. Yu, Y. Tong and X. Lu, Energy Storage Mater. 21 (2019) 154-161
    [224]
    P. Ruan, X. Xu, X. Gao, J. Feng, L. Yu, Y. Cai, X. Gao, W. Shi, F. Wu, W. Liu, X. Zang, F. Ma and X. Cao, Sustain. Mater. Techno. 28 (2021) e00254
    [225]
    M. Sun, D. S. Li, Y. F. Wang, W. L. Liu, M. M. Ren, F. G. Kong, S. J. Wang, Y. Z. Guo and Y. M. Liu, ChemElectroChem 6 (2019) 2510-2516
    [226]
    J. Shi, S. Wang, Q. Wang, X. Chen, X. Du, M. Wang, Y. Zhao, C. Dong, L. Ruan and W. Zeng, J. Power Sources 446 (2020) 227345
    [227]
    L. Suo, O. Borodin, T. Gao, M. Olguin, J. Ho, X. Fan, C. Luo, C. Wang and K. Xu, Science 350 (2015) 938-943
    [228]
    T. Sun, Q. Nian, S. Zheng, J. Shi and Z. Tao, Small 16 (2020) e2000597
    [229]
    J. Wang, J. Li, C. Jiang, P. Zhou, P. Zhang and J. Yu, Appl. Catal., B. 204 (2017) 147-155
    [230]
    H. Wang, J. Zhang, X. Hang, X. Zhang, J. Xie, B. Pan and Y. Xie, Angew. Chem. Int. Edit 54 (2015) 1195-1199
    [231]
    C. Zhao, M. Yu, Z. Yang, J. Liu, S. Chen, Z. Hong, H. Chen and W. Wang, Nano Energy 51 (2018) 91-101
    [232]
    Y. Zhang, S. Deng, G. Pan, H. Zhang, B. Liu, X. L. Wang, X. Zheng, Q. Liu, X. Wang, X. Xia and J. Tu, Small Methods 4 (2020) 1900828
    [233]
    Q. Zong, Q. Zhang, X. Mei, Q. Li, Z. Zhou, D. Li, M. Chen, F. Shi, J. Sun, Y. Yao and Z. Zhang, ACS Appl. Mater. Inter. 10 (2018) 37233-37241
    [234]
    M. J. Young, A. M. Holder, S. M. George and C. B. Musgrave, Chem. Mater. 27 (2015) 1172-1180
    [235]
    Q. Ye, R. Dong, Z. Xia, G. Chen, H. Wang, G. Tan, L. Jiang and F. Wang, Electrochim. Acta 141 (2014) 286-293
    [236]
    H. Xia, X. Zhu, J. Liu, Q. Liu, S. Lan, Q. Zhang, X. Liu, J. K. Seo, T. Chen, L. Gu and Y. S. Meng, Nat. Commun. 9 (2018) 5100
    [237]
    W. Xu, J. Wan, W. Huo, Q. Yang, Y. Li, C. Zhang, X. Gu and C. Hu, Chem. Eng. J. 354 (2018) 1050-1057
    [238]
    Y. Jiao, L. Kang, J. Berry-Gair, K. McColl, J. Li, H. Dong, H. Jiang, R. Wang, F. Cora, D. J. L. Brett, G. He and I. P. Parkin, J. Mater. Chem. A 8 (2020) 22075-22082
    [239]
    A. S. Poyraz, J. Huang, C. J. Pelliccione, X. Tong, S. Cheng, L. Wu, Y. Zhu, A. C. Marschilok, K. J. Takeuchi and E. S. Takeuchi, J. Mater. Chem. A 5 (2017) 16914-16928
    [240]
    R. Zhao, L. Zhang, C. Wang and L. Yin, J. Power Sources 353 (2017) 77-84
    [241]
    Y. R. Li, A. S. Poyraz, X. Hu, M. Cuiffo, C. R. Clayton, L. Wu, Y. Zhu, E. S. Takeuchi, A. C. Marschilok and K. J. Takeuchi, J. Electrochem. Soc. 164 (2017) A2151-A2158
    [242]
    A. V. Radhamani, M. Krishna Surendra and M. S. R. Rao, Appl. Surf. Sci. 450 (2018) 209-218
    [243]
    M. H. Alfaruqi, S. Islam, V. Mathew, J. Song, S. Kim, D. P. Tung, J. Jo, S. Kim, J. P. Baboo, Z. Xiu and J. Kim, Appl. Surf. Sci. 404 (2017) 435-442
    [244]
    Z. Hu, X. Xiao, L. Huang, C. Chen, T. Li, T. Su, X. Cheng, L. Miao, Y. Zhang and J. Zhou, Nanoscale 7 (2015) 16094-16099
    [245]
    M. Yan, P. He, Y. Chen, S. Wang, Q. Wei, K. Zhao, X. Xu, Q. An, Y. Shuang, Y. Shao, K. T. Mueller, L. Mai, J. Liu and J. Yang, Adv. Mater. 30 (2018) 1703725
    [246]
    M. H. Alfaruqi, J. Gim, S. Kim, J. Song, D. T. Pham, J. Jo, Z. Xiu, V. Mathew and J. Kim, Electrochem. Commun. 60 (2015) 121-125
    [247]
    B.-R. Chen, W. Sun, D. A. Kitchaev, J. S. Mangum, V. Thampy, L. M. Garten, D. S. Ginley, B. P. Gorman, K. H. Stone, G. Ceder, M. F. Toney and L. T. Schelhas, Nat. Commun. 9 (2018) 2553
    [248]
    G. Liu, H. Huang, R. Bi, X. Xiao, T. Ma and L. Zhang, J. Mater. Chem. A 7 (2019) 20806-20812
    [249]
    D. Zhai, B. Li, C. Xu, H. Du, Y. He, C. Wei and F. Kang, J. Power Sources 196 (2011) 7860-7867
    [250]
    Y. Li, X. Feng, S. Cui, Q. Shi, L. Mi and W. Chen, CrystEngComm 18 (2016) 3136-3141
    [251]
    J. Wang, J.-G. Wang, H. Liu, C. Wei and F. Kang, J. Mater. Chem. A 7 (2019) 13727-13735
    [252]
    D. Ahn, I. Yoo, Y.-M. Koo, N. Shin, J. Kim and T. J. Shin, J. Mater. Chem. 21 (2011) 5282
    [253]
    K. W. Nam, H. Kim, J. H. Choi and J. W. Choi, Energy Environ. Sci. 12 (2019) 1999-2009
    [254]
    Q. Zhang, M. D. Levi, Q. Dou, Y. Lu, Y. Chai, S. Lei, H. Ji, B. Liu, X. Bu, P. Ma and X. Yan, Adv. Energy Mater. 9 (2019) 1802707
    [255]
    H. Liu, J.-G. Wang, W. Hua, Z. You, Z. Hou, J. Yang, C. Wei and F. Kang, Energy Storage Mater. 35 (2021) 731-738
    [256]
    X. Gao, H. Wu, W. Li, Y. Tian, Y. Zhang, H. Wu, L. Yang, G. Zou, H. Hou and X. Ji, Small 16 (2020) e1905842
    [257]
    L. Li, T. K. A. Hoang, J. Zhi, M. Han, S. Li and P. Chen, ACS Appl. Mater. Inter. 12 (2020) 12834-12846
    [258]
    M. H. Alfaruqi, S. Islam, J. Gim, J. Song, S. Kim, D. T. Pham, J. Jo, Z. Xiu, V. Mathew and J. Kim, Chem. Phys. Lett. 650 (2016) 64-68
    [259]
    T. Yamamoto and T. Shoji, Inorg. Chim. Acta 117 (1986) L27-L28
    [260]
    Q. Pang, H. Zhao, R. Lian, Q. Fu, Y. Wei, A. Sarapulova, J. Sun, C. Wang, G. Chen and H. Ehrenberg, J. Mater. Chem. A 8 (2020) 9567-9578
    [261]
    R. C. Masse and J. B. Gerken, J. Chem. Educ. 92 (2014) 110-115
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (249) PDF downloads(29) Cited by()
    Proportional views

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return