J. Mater. Sci. Technol. ›› 2023, Vol. 143: 129-139.DOI: 10.1016/j.jmst.2022.09.049
• Research Article • Previous Articles Next Articles
Yu Jin Jang, Hong Geun Oh, Seung-Keun Park*
Received:
2022-08-22
Revised:
2022-08-22
Accepted:
2022-08-22
Online:
2023-04-14
Contact:
*E-mail address: Yu Jin Jang, Hong Geun Oh, Seung-Keun Park. Rational design of ultrafine FeSe2 nanocrystals embedded within hollow mesoporous carbon bowls for potassium-ion batteries with long-term cycling stability and high volumetric capacity[J]. J. Mater. Sci. Technol., 2023, 143: 129-139.
[1] X. Wu, D.P. Leonard, X. Ji, Chem. Mater. 29(2017) 5031-5042. [2] R. Rajagopalan, Y. Tang, X. Ji, C. Jia, H. Wang, Adv. Funct. Mater. 30(2020) 1909486. [3] H. Zhang, C. Luo, H. He, H.H. Wu, L. Zhang, Q. Zhang, H. Wang, M.S. Wang, Nanoscale Horiz. 5(2020) 895-903. [4] S.H. Qi, J.W. Deng, W.C. Zhang, Y.Z. Feng, J.M. Ma, Rare Met. 39(2020) 970-988. [5] Z. Zhang, B. Jia, L. Liu, Y. Zhao, H. Wu, M. Qin, K. Han, W.A. Wang, K. Xi, L. Zhang, G. Qi, X. Qu, R.V. Kumar, ACS Nano 13 (2019) 11363-11371. [6] C. Lu, Z. Sun, L. Yu, X. Lian, Y. Yi, J. Li, Z. Liu, S. Dou, J. Sun, Adv. Energy Mater. 10(2020) 2001161. [7] H. Qiu, L. Zhao, M. Asif, X. Huang, T. Tang, W. Li, T. Zhang, T. Shen, Y. Hou, Energy Environ. Sci. 13(2020) 571-578. [8] C. Chen, Z. Wang, B. Zhang, L. Miao, J. Cai, L. Peng, Y. Huang, J. Jiang, Y. Huang, L. Zhang, J. Xie, Energy Storage Mater. 8(2017) 161-168. [9] W. Zhang, Y. Liu, Z. Guo, Sci. Adv. 5 (2019) eaav7412. [10] W. Yang, J. Zhou, S. Wang, Z. Wang, F. Lv, W. Zhang, W. Zhang, Q. Sun, S. Guo, ACS Energy Lett. 5(2020) 1653-1661. [11] S. Zhang, F. Ling, L. Wang, R. Xu, M. Ma, X. Cheng, R. Bai, Y. Shao, H. Huang, D. Li, Y. Jiang, X. Rui, J. Bai, Y. Yao, Y. Yu, Adv. Mater. 34(2022) 2201420. [12] H. Shan, J. Qin, Y. Ding, H.M.K.Sari, X. Song, W.Liu, Y. Hao, J. Wang, C. Xie, J. Zhang, X. Li, Adv. Mater. 33(2021) 2102471. [13] D. Li, J. Zhang, G. Suo, Q. Yu, W. Wang, L. Feng, X. Hou, X. Ye, L. Zhang, Y. Yang, J. Electroanal. Chem. 864(2020) 114100. [14] A. Lee, G.D. Park, Y.C. Kang, Int. J. Energy Res. 46(2022) 3539-3553. [15] X. Mao, X. Gu, S. Wen, L. Zhang, P. Dai, L. Li, D. Liu, D. Li, Z. Li, K. Zhang, X. Zhao, Sustain. Energy Fuels 5 (2021) 3240-3246. [16] S.M. Ahmed, G. Suo, W.A. Wang, K. Xi, S.B. Iqbal, J. Energy Chem. 62(2021) 307-337. [17] W. Xin, N. Chen, Z. Wei, C. Wang, G. Chen, F. Du, Chem. Eur. J. 27(2021) 3745-3752. [18] T. Wang, W. Guo, G. Wang, H. Wang, J. Bai, B. Wang, J. Alloy. Compd. 834(2020) 155265. [19] S. Xu, Y. Yin, H. Niu, X. Wang, C. Shao, K. Xi, Z. Zhang, Y. Guo, Appl. Surf. Sci. 536(2021) 147774. [20] Z. Li, R. Sun, Z. Qin, X. Liu, C. Wang, H. Fan, Y. Zhang, S. Lu, Mater. Chem. Front. 5(2021) 4401-4423. [21] R. Wang, K. Sun, H. Liu, C. Qian, M. Li, Y. Zhang, W. Bao, J. Mater. Chem. A 10 (2022) 11504-11513. [22] D. Qiu, J. Guan, M. Li, C. Kang, J. Wei, Y. Li, Z. Xie, F. Wang, R. Yang, Adv. Funct. Mater. 29(2019) 1903496. [23] J. Ding, H. Zhang, H. Zhou, J. Feng, X. Zheng, C. Zhong, E. Paek, W. Hu, D. Mitlin, Adv. Mater. 31(2019) 1900429. [24] J. Ju, A. Xu, Y. Song, H. Sun, L. Fu, Y. Yan, S. Wu, ACS Appl. Nano Mater. 4(2021) 4863-4871. [25] D. Ni, W. Sun, Z. Wang, Y. Bai, H. Lei, X. Lai, K. Sun, Adv. Energy Mater. 9(2019) 1900036. [26] S.H. Yang, S.K. Park, Y.C. Kang, Nano-Micro Lett. 13(2020) 9. [27] M. Qin, Z. Zhang, Y. Zhao, L. Liu, B. Jia, K. Han, H. Wu, Y. Liu, L. Wang, X. Min, K. Xi, C.Y. Lao, W. Wang, X. Qu, R.V. Kumar, Adv. Funct. Mater. 29(2019) 1902822. [28] R. Fei, H. Wang, Q. Wang, R. Qiu, S. Tang, R. Wang, B. He, Y. Gong, H.J. Fan, Adv. Energy Mater. 10(2020) 2002741. [29] S. Li, A. Pasc, V. Fierro, A. Celzard, J. Mater. Chem. A 4 (2016) 12686-12713. [30] H. Fan, H. Yu, Y. Zhang, J. Guo, Z. Wang, H. Wang, N. Zhao, Y. Zheng, C. Du, Z. Dai, Q. Yan, J. Xu, Energy Storage Mater. 10(2018) 48-55. [31] J.S. Cho, J.K. Lee, Y.C. Kang, Sci. Rep. 6(2016) 23699. [32] W. Shi, X. Zhang, G. Che, W. Fan, C. Liu, Chem. Eng. J.215-216(2013) 508-516. [33] S.H. Yang, Y.J. Lee, H. Kang, S.K. Park, Y.C. Kang, Nano-Micro Lett. 14(2021) 17. [34] N. Dwivedi, R.J. Yeo, N. Satyanarayana, S. Kundu, S. Tripathy, C.S. Bhatia, Sci. Rep. 5(2015) 7772. [35] Y. Zhang, Z. Sun, H. Wang, Y. Wang, M. Liang, S. Xue, RSC Adv. 5(2015) 10430-10439. [36] S.K. Park, J.K. Kim, Y.C. Kang, J. Mater. Chem. A 5 (2017) 18823-18830. [37] Z. Feng, E. Wang, S. Huang, J. Liu, Nanoscale 12 (2020) 4 426-4 434. [38] M. Yousaf, Z. Wang, Y. Wang, Y. Chen, U. Ali, M. Maqbool, A. Imran, N. Mah-mood, P. Gao, R.P.S. Han, Small 16 (2020) 2002200. [39] S. Ning, G. Feng, H. Zhang, W. Zhang, S. Dai, S. Zhou, Opt. Mater. 89(2019) 473-479. [40] Y. Liu, C. Yang, Y. Li, F. Zheng, Y. Li, Q. Deng, W. Zhong, G. Wang, T. Liu, Chem. Eng. J. 393(2020) 124590. [41] K. Zhang, Z. Hu, X. Liu, Z. Tao, J. Chen, Adv. Mater. 27(2015) 3305-3309. [42] J. Ge, B. Wang, J. Wang, Q. Zhang, B. Lu, Adv. Energy Mater. 10(2020) 1903277. [43] J. Hu, Y. Xie, X. Zhou, Z. Zhang, ACS Appl. Mater. Interfaces 12 (2020) 1232-1240. [44] B. Jia, Q. Yu, Y. Zhao, M. Qin, W. Wang, Z. Liu, C.Y. Lao, Y. Liu, H. Wu, Z. Zhang, X. Qu, Adv. Funct. Mater. 28(2018) 1803409. [45] J. Ruan, Y. Zhao, S. Luo, J. Hu, Y. Pang, F. Fang, S. Zheng, J. Energy Chem. 65(2022) 556-564. [46] Y. Fang, X.Y. Yu, X.W. Lou, Adv. Mater. 30(2018) 1706668. [47] Y. He, J. Xue, M. Yang, T. Huang, X. Xia, Y. Chen, H. Liu, Chem. Eng. J. 409(2021) 127383. [48] Z. Li, C. Wang, X. Chen, X. Wang, X. Li, Y. Yamauchi, X. Xu, J. Wang, C. Lin, D. Luo, X. Wang, X.S. Zhao, Chem. Eng. J. 381(2020) 122588. [49] D. Li, X. Ren, Q. Ai, Q. Sun, L. Zhu, Y. Liu, Z. Liang, R. Peng, P. Si, J. Lou, J. Feng, L. Ci, Adv. Energy Mater. 8(2018) 1802386. [50] Y. Lin, J. Liu, L. Shi, N. Guo, Z. Sun, C. Geng, J. Jiang, Q. Zhuang, Y. Chen, Z. Ju, J. Colloid Interface Sci. 623(2022) 1-8. [51] B. Ji, W. Yao, Y. Zheng, P. Kidkhunthod, X. Zhou, S. Tunmee, S. Sattayaporn, H.M. Cheng, H. He, Y. Tang, Nat. Commun. 11(2020) 1225. |
[1] | Jun Xiao, Xin Min, Yue Lin, Qiyao Yu, Wei Wang, Xiaowen Wu, Yangai Liu, Zhaohui Huang, Minghao Fang. A high-tortuosity holey graphene in-situ derived from cytomembrane/cytoderm boosts ultrastable potassium storage [J]. J. Mater. Sci. Technol., 2023, 139(0): 69-78. |
[2] | Song, Achmad Yanuar Maulana, Woojin Jae, Hyunjeong Gim, Boram Yun, Cybelle M. Futalan, Jongsik Kim. One-dimensional Li3VO4/carbon fiber composites for enhanced electrochemical performance as an anode material for lithium-ion batteries [J]. J. Mater. Sci. Technol., 2023, 140(0): 142-152. |
[3] | Bao Zhang, Baohe Xu, Haozhe Qin, Liang Cao, Xing Ou. Highly active and stable Cu9S5-MoS2 heterostructures nanocages enabled by dual-functional Cu electrocatalyst with enhanced potassium storage [J]. J. Mater. Sci. Technol., 2023, 143(0): 107-116. |
[4] | Yongqiang Ren, Xiuyan Li, Yinan Wang, Qinghua Gong, Shaonan Gu, Tingting Gao, Xuefeng Sun, Guowei Zhou. Self-template formation of porous yolk-shell structure Mo-doped NiCo2O4 toward enhanced lithium storage performance as anode material [J]. J. Mater. Sci. Technol., 2022, 102(0): 186-194. |
[5] | Shuhua Hao, Yupeng Xing, Peiyu Hou, Gang Zhao, Jinzhao Huang, Shipeng Qiu, Xijin Xu. Rational construction of phosphate layer to optimize Cu-regulated Fe3O4 as anode material with promoted energy storage performance for rechargeable Ni-Fe batteries [J]. J. Mater. Sci. Technol., 2022, 108(0): 133-141. |
[6] | Hua Jian, Qinrui Du, Qiaoqiao Men, Li Guan, Ruosong Li, Bingbing Fan, Xin Zhang, Xiaoqin Guo, Biao Zhao, Rui Zhang. Structure-dependent electromagnetic wave absorbing properties of bowl-like and honeycomb TiO2/CNT composites [J]. J. Mater. Sci. Technol., 2022, 109(0): 105-113. |
[7] | Jingqi Chen, Xianlei Hu, Haitao Gao, Shu Yan, Shoudong Chen, Xianghua Liu. Graphene-wrapped MnCO3/Mn3O4 nanocomposite as an advanced anode material for lithium-ion batteries: Synergistic effect and electrochemical performances [J]. J. Mater. Sci. Technol., 2022, 99(0): 9-17. |
[8] | Zhijia Zhang, Yuefang Chen, Shihao Sun, Kai Sun, Heyi Sun, Hongwei Li, Yuhe Yang, Mengmeng Zhang, Weijie Li, Shulei Chou, Huakun Liu, Yong Jiang. Recent progress on three-dimensional nanoarchitecture anode materials for lithium/sodium storage [J]. J. Mater. Sci. Technol., 2022, 119(0): 167-181. |
[9] | Chengcheng Huang, Yiwen Liu, Runtian Zheng, Zhengwei Yang, Zhonghao Miao, Junwei Zhang, Xinhao Cai, Haoxiang Yu, Liyuan Zhang, Jie Shu. Interlayer gap widened TiS2 for highly efficient sodium-ion storage [J]. J. Mater. Sci. Technol., 2022, 107(0): 64-69. |
[10] | Riguang Cheng, Yanxun Guan, Yumei Luo, Chenchen Zhang, Sheng Wei, Mengmeng Zhao, Qi Lin, Hao Li, Shiyou Zheng, Federico Rosei, Lixian Sun, Fen Xu, Hongge Pan. Guanine-assisted N-doped ordered mesoporous carbons as efficient capacity decaying suppression materials for lithium-sulfur batteries [J]. J. Mater. Sci. Technol., 2022, 101(0): 155-164. |
[11] | Qun Ma, Lida Song, Yuan Wan, Kangze Dong, Zhiyuan Wang, Dan Wang, Hongyu Sun, Shaohua Luo, Yanguo Liu. Precise tuning of low-crystalline Sb@Sb2O3 confined in 3D porous carbon network for fast and stable potassium ion storage [J]. J. Mater. Sci. Technol., 2021, 94(0): 123-129. |
[12] | Seong-Tae Kim, Jong Min Park, Kwi-Il Park, Sang-Eun Chun, Ho Seong Lee, Pyuck-Pa Choi, Seonghoon Yi. Enhanced thermoelectric composite performance from mesoporous carbon additives in a commercial Bi0.5Sb1.5Te3 matrix [J]. J. Mater. Sci. Technol., 2021, 94(0): 175-182. |
[13] | Kai Huang, Yuyang Xu, Yanpeng Song, Ruyue Wang, Hehe Wei, Yuanzheng Long, Ming Lei, Haolin Tang, Jiangang Guo, Hui Wu. NiPS3 quantum sheets modified nitrogen-doped mesoporous carbon with boosted bifunctional oxygen electrocatalytic performance [J]. J. Mater. Sci. Technol., 2021, 65(0): 1-6. |
[14] | Zhi-Jia Zhang, Wei-Jie Li, Shu-Lei Chou, Chao Han, Hua-Kun Liu, Shi-Xue Dou. Effects of carbon on electrochemical performance of red phosphorus (P) and carbon composite as anode for sodium ion batteries [J]. J. Mater. Sci. Technol., 2021, 68(0): 140-146. |
[15] | Zhou Zhou, Chaoying Ding, Wenchao Peng, Yang Li, Fengbao Zhang, Xiaobin Fan. One-step fabrication of two-dimensional hierarchical Mn2O3@graphene composite as high-performance anode materials for lithium ion batteries [J]. J. Mater. Sci. Technol., 2021, 80(0): 13-19. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||