Chem. J. Chinese Universities ›› 2026, Vol. 47 ›› Issue (8): 20260046.doi: 10.7503/cjcu20260046
• Physical Chemistry • Previous Articles Next Articles
YANG Ting1, SONG Yaxuan1, ZHANG Jinyu1, FENG Xiaoyu1, GE Yufeng1, JING Xiaoxia1(
), CHANG Panpan2(
)
Received:2026-01-26
Online:2026-08-10
Published:2026-04-07
Contact:
JING Xiaoxia, CHANG Panpan
E-mail:jingxiaoxia@ycu.edu.cn;changpp@gxust.edu.cn
Supported by:CLC Number:
TrendMD:
YANG Ting, SONG Yaxuan, ZHANG Jinyu, FENG Xiaoyu, GE Yufeng, JING Xiaoxia, CHANG Panpan. Synergistic Modification of Ni2+ Doping and Nanostructure Regulation for High-performance Aqueous Zinc-ion Battery MnO2 Cathodes[J]. Chem. J. Chinese Universities, 2026, 47(8): 20260046.
| Sample | Rs/Ω | Rsurf/Ω | Rct/Ω |
|---|---|---|---|
| NiMnO2⁃n | 4.91 | 9.26 | 40.54 |
| NiMnO2⁃m | 5.74 | 15.02 | 53.84 |
| MnO2⁃m | 5.80 | 18.06 | 155.10 |
Table 1 EIS fitting results of Zn||MnO2-m, Zn||NiMnO2-m and Zn||NiMnO2-n batteries after 8 cycles
| Sample | Rs/Ω | Rsurf/Ω | Rct/Ω |
|---|---|---|---|
| NiMnO2⁃n | 4.91 | 9.26 | 40.54 |
| NiMnO2⁃m | 5.74 | 15.02 | 53.84 |
| MnO2⁃m | 5.80 | 18.06 | 155.10 |
| [1] | Khamsanga S., Pornprasertsuk R., Yonezawa T., Mohamad A. A., Kheawhom S., Sci. Rep., 2019, 9(1), 8441 |
| [2] | Chao D., Ye C., Xie F., Zhou W., Zhang Q., Gu Q., Davey K., Gu L., Qiao S. Z., Adv. Mater., 2020, 32(25), 2001894 |
| [3] | Chuai M., Yang J., Tan R., Liu Z., Yuan Y., Xu Y., Sun J., Wang M., Zheng X., Chen N., Chen W., Adv. Mater., 2022, 34(33), 2203249 |
| [4] | Gou L., Sun A. H., Liang K., Wang Y. J., Fan X. Y., Li D. L., Chem. J. Chinese Universities, 2025, 46(10), 20250105 |
| 苟蕾, 孙爱红, 梁凯, 王延静, 樊小勇, 李东林. 高等学校化学学报, 2025, 46(10), 20250105 | |
| [5] | Zhang T., Li T., Shen Y., Ma H., Wei C., Cai J., Xu Y., Li Y., Dong X., Zhang S., Huang F., Lin T., Adv. Mater., 2025, 37(34), 2505082 |
| [6] | Blanc L. E., Kundu D., Nazar L. F., Joule, 2020, 4(4), 771—799 |
| [7] | Zhou M., Zheng Y., Bi J., Liu L., Sun W., Tian C., Cai Z., Zhao X., Niu C., Sun Y., Pan H., Angew. Chem. Int. Ed., 2025, 65(6), e23672 |
| [8] | Dong Y., Jia M., Wang Y., Xu J., Liu Y., Jiao L., Zhang N., ACS Appl. Energy Mater., 2020, 3(11), 11183—11192 |
| [9] | Hu P., Zhu T., Wang X., Wei X., Yan M., Li J., Luo W., Yang W., Zhang W., Zhou L., Zhou Z., Mai L., Nano Lett., 2018, 18(3), 1758—1763 |
| [10] | Deng W., Li Z., Ye Y., Zhou Z., Li Y., Zhang M., Yuan X., Hu J., Zhao W., Huang Z., Li C., Chen H., Zheng J., Li R., Adv. Energy Mater., 2021, 11(31), 2003639 |
| [11] | Ma L., Chen S., Long C., Li X., Zhao Y., Liu Z., Huang Z., Dong B., Zapien J. A., Zhi C., Adv. Energy Mater., 2019, 9(45), 1902446 |
| [12] | Wang Q., Xu X., Yang G., Liu Y., Yao X., Chem. Commun., 2020, 56(79), 11859—11862 |
| [13] | Cui H., Ma L., Huang Z., Chen Z., Zhi C., SmartMat, 2022, 3(4), 565—581 |
| [14] | Zhang J., Li W., Wang J., Pu X., Zhang G., Wang S., Wang N., Li X., Angew. Chem. Int. Ed., 2023, 62(8), e202215654 |
| [15] | Guo X., Zhou J., Bai C., Li X., Fang G., Liang S., Mater. Today Energy, 2020, 16,100396 |
| [16] | Wei C., Xu C., Li B., Du H., Kang F., J. Phys. Chem. Solids, 2012, 73(12), 1487—1491 |
| [17] | Chacko B., Wuppulluri M., Mater. Renew. Sustain. Energy, 2025, 14(1), 10 |
| [18] | Zheng J., Zhao J., Ye J., Deng K., Liu P., Liao Q., Liu X., Lv X., Tan S., Tian W., Ji J., Appl. Surf. Sci., 2023, 635,157665 |
| [19] | Cai Z., Zhou M., Sun W., Li Y., Pan H., ACS Appl. Mater. Interfaces, 2025, 17(46), 63861—63870 |
| [20] | Wang Y., Zhou H., Wei S., Chen S., Cao D., Zhou Q., Wu X., Song L., J. Am. Chem. Soc., 2025, 147(45), 41297—41307 |
| [21] | Liu X., Zheng J., Li J., Ming F., Zhu Y., Wei B., Qi Z., Makgwane P. R., Liang H., Nano Lett., 2025, 25(51), 17790—17796 |
| [22] | Cai Y., Chua R., Huang S., Ren H., Srinivasan M., Chem. Eng. J., 2020, 396,125221 |
| [23] | Karbak M., Baazizi M., Sayah S., Autret⁃Lambert C., Tison Y., Martinez H., Chafik T., Ghamouss F., J. Mater. Chem. A, 2023, 11(6), 2634—2640 |
| [24] | Zhang X., Ma X., Bi H., Zhang Y., Mi P., Liu F., Jin X., Chen Y., Zhang K., Wang J., Dong Y., Adv. Funct. Mater., 2025, 35(1), 2411990 |
| [25] | Lin J., Wang Y., Chen M., Lu J., Mi H., Chen J., He C., Ma D., Zhang P., Adv. Energy Mater., 2024, 14(31), 2401275 |
| [26] | Ye J. J., Li P. H., Hou Z., Zhang W., Zhu W., Jin S., Ji H., Angew. Chem. Int. Ed., 2024, 63(43), e202410900 |
| [27] | Zhao Y., Zhang S., Zhang Y., Liang J., Ren L., Fan H. J., Liu W., Sun X., Energy Environ. Sci., 2024, 17(3), 1279—1290 |
| [28] | Chacón⁃Borrero J., Chang X., Min Z., Yu J., Montaña⁃Mora G., Mejia⁃Centeno K. V., Sun Y., Zhou X., Tunmee S., Kidkhunthod P., Li J., Llorca J., Arbiol J., Cabot A., Energy Storage Mater., 2025, 81,104486 |
| [29] | Li T., Zhang N., Liu B., Wang P., Liu Z., Wang Y., Xu D., Tian H., Zhang Q., Yi T. F., Adv. Funct. Mater., 2025, 35(20), 2423755 |
| [30] | Xu Y., Zhang G., Wang X., Zhang J., Wen H., Wang D., Yuan Y., Jiang Q., Qian H., Xi Y., Zuo J., Li M., Liu J., Yang H., Luo Y., Wang J., Li W., Li X., Adv. Funct. Mater., 2025, 35(27), 2500137 |
| [31] | Xie D., Wang Y., Tian L., Huang H., Sun J., Kim D. W., Zhao J., Mao J., Adv. Funct. Mater., 2025, 35(4), 2413993 |
| [32] | Liang J., Zhao Y., Ren L., Li M., Zhang Q., Wang Y., Sun X., Chuai M., Wang X., Liu W., Adv. Funct. Mater., 2025, 35(25), 2501135 |
| [33] | Ge W., Chen X., Ma R., Zheng S., Shang N., Zhao X., Chem. Res. Chinese Universities, 2024, 40(3), 437—450 |
| [34] | Hou P., Yang N., Wang D., Chem. Res. Chinese Universities, 2024, 40(3), 394—412 |
| [35] | Meng D., Ran S., Gao L., Zhang Y., San X., Zhang L., Li R., Jin Q., Chem. Res. Chinese Universities, 2024, 40(3), 490—498 |
| [36] | Wang C. B., Li P., Chen D. H., Zhang R. L., Wang L., Zong L. B., Chem. Res. Chinese Universities, 2024, 40(3),462—474 |
| [37] | Li L., Wang J., Chen Z., Dong J., Chang P., Zhang J., Yang T., Ding R., Chem. Eng. J., 2025, 507,160760 |
| [38] | Chen Y., Lin C., Chen X., Lu Z., Zhang K., Liu Y., Wang J., Han G., Xu G., Adv. Energy Mater., 2024, 14, 2304303 |
| [39] | Wang Y., Zhang Y., Gao G., Fan Y., Wang R., Feng J., Yang L., Meng A., Zhao J., Li Z., Nano Micro Lett., 2023, 15(1), 219 |
| [40] | Liang X., Hart C., Pang Q., Garsuch A., Weiss T., Nazar L. F., Nat. Commun., 2015, 6(1), 5682 |
| [41] | Wu D., King S. T., Sadique N., Ma L., Ehrlich S. N., Ghose S., Bai J., Zhong H., Yan S., Bock D. C., Takeuchi E. S., Marschilok A. C., Housel L. M., Wang L., Takeuchi K. J., J. Mater. Chem. A, 2023, 11(30), 16279—16292 |
| [42] | Ren Y., Li H., Rao Y., Zhou H., Guo S., Energy Environ. Sci., 2024, 17(2), 425—441 |
| [43] | Geng L., Meng J., Wang X., Wu W., Han K., Huang M., Han C., Wu L., Li J., Zhou L., Mai L., Chem, 2025, 11(2), 102302 |
| [44] | Li Y. S., Geng L. S., Zhang B. M., Wei Z. H., Fan H., Li J. H., Feng W. C., Zhou L., Rare Met., 2025, 44(2), 950—960 |
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