Energy Storage Science and Technology ›› 2023, Vol. 12 ›› Issue (5): 1444-1452.doi: 10.19799/j.cnki.2095-4239.2022.0765
• Special Issue on Key Materials and Recycling Technologies for Energy Storage Batteries • Previous Articles Next Articles
Chang LIU1(), Junjun YAO1, Ying SUN1, Daming FENG1, Hongjie ZHENG1, Tianyi MA2()
Received:
2022-12-27
Revised:
2023-01-19
Online:
2023-05-05
Published:
2023-05-29
Contact:
Tianyi MA
E-mail:liuchang2596@163.com;tianyi.ma@rmit.edu.au
CLC Number:
Chang LIU, Junjun YAO, Ying SUN, Daming FENG, Hongjie ZHENG, Tianyi MA. Coordinated preparation of pitch-based carbon microspheres for anode materials of high-rate potassium-ion batteries by emulsification/oxidation[J]. Energy Storage Science and Technology, 2023, 12(5): 1444-1452.
1 | LIN C R, WANG Y J, ZHONG F L, et al. Carbon materials for high-performance potassium-ion energy-storage devices[J]. Chemical Engineering Journal, 2021, 407: 126991. |
2 | 张贺贺, 孙旦, 王海燕, 等. 钾离子电池负极材料研究进展[J]. 储能科学与技术, 2020, 9(1): 25-39. |
ZHANG H H, SUN D, WANG H Y, et al. Current studies of anode materials for potassium-ion battery[J]. Energy Storage Science and Technology, 2020, 9(1): 25-39. | |
3 | WU Y M, ZHAO H T, WU Z G, et al. Rational design of carbon materials as anodes for potassium-ion batteries[J]. Energy Storage Materials, 2021, 34: 483-507. |
4 | ZHAO J, ZOU X X, ZHU Y J, et al. Electrochemical intercalation of potassium into graphite[J]. Advanced Functional Materials, 2016, 26(44): 8103-8110. |
5 | YU K, LIU C, WANG Y, et al. Molecular tuning of sulfur doped quinoline oligomer derived soft carbon for superior potassium storage[J]. Carbon, 2022, 191: 10-18. |
6 | JIANG M C, SUN N, ALI SOOMRO R, et al. The recent progress of pitch-based carbon anodes in sodium-ion batteries[J]. Journal of Energy Chemistry, 2021, 55: 34-47. |
7 | LIU C, ZHENG H J, WANG Y W, et al. Microstructure regulation of pitch-based soft carbon anodes by iodine treatment towards high-performance potassium-ion batteries[J]. Journal of Colloid and Interface Science, 2022, 615: 485-493. |
8 | LIU C, XIAO N, LI H J, et al. Nitrogen-doped soft carbon frameworks built of well-interconnected nanocapsules enabling a superior potassium-ion batteries anode[J]. Chemical Engineering Journal, 2020, 382: 121759. |
9 | LIU Q D, HAN F, ZHOU J F, et al. Boosting the potassium-ion storage performance in soft carbon anodes by the synergistic effect of optimized molten salt medium and N/S dual-doping[J]. ACS Applied Materials & Interfaces, 2020, 12(18): 20838-20848. |
10 | 肖南, 邱介山. 煤沥青基功能碳材料的研究现状及前景[J]. 化工进展, 2016, 35(6): 1804-1811. |
XIAO N, QIU J S. Progress in synthesis and applications of functional carbon materials from coal tar pitch[J]. Chemical Industry and Engineering Progress, 2016, 35(6): 1804-1811. | |
11 | WANG Y W, XIAO N, WANG Z Y, et al. Rational design of high-performance sodium-ion battery anode by molecular engineering of coal tar pitch[J]. Chemical Engineering Journal, 2018, 342: 52-60. |
12 | LIU Y, LU Y X, XU Y S, et al. Pitch-derived soft carbon as stable anode material for potassium ion batteries[J]. Advanced Materials (Deerfield Beach, Fla), 2020, 32(17): e2000505. |
13 | SUN Q, LI D P, CHENG J, et al. Nitrogen-doped carbon derived from pre-oxidized pitch for surface dominated potassium-ion storage[J]. Carbon, 2019, 155: 601-610. |
14 | ZHANG G L, GUAN T T, CHENG M, et al. Harvesting honeycomb-like carbon nanosheets with tunable mesopores from mild-modified coal tar pitch for high-performance flexible all-solid-state supercapacitors[J]. Journal of Power Sources, 2020, 448: 227446. |
15 | ZHUANG Q Q, CAO J P, WU Y, et al. Direct synthesis of oxygen-enriched 3D porous carbons via NaCl template derived from oxidized coal tar pitch for excellent cycling stability electric double layer capacitor[J]. Journal of Power Sources, 2021, 508: 230330. |
16 | WU J C, WANG J L, GUAN T T, et al. Tailored C-N bond toward defect-rich hierarchically porous carbon from coal tar pitch for high-efficiency adsorptive desulfurization[J]. Fuel, 2021, 292: 120251. |
17 | QI Y R, LU Y X, LIU L L, et al. Retarding graphitization of soft carbon precursor: From fusion-state to solid-state carbonization[J]. Energy Storage Materials, 2020, 26: 577-584. |
18 | LIU C, ZHENG H J, YU K, et al. Direct synthesis of P/O-enriched pitch-based carbon microspheres from a coordinated emulsification and pre-oxidation towards high-rate potassium-ion batteries[J]. Carbon, 2022, 194: 176-184. |
19 | YUAN M, CAO B, MENG C Y, et al. Preparation of pitch-based carbon microbeads by a simultaneous spheroidization and stabilization process for lithium-ion batteries[J]. Chemical Engineering Journal, 2020, 400: 125948. |
20 | LU Y X, ZHAO C L, QI X G, et al. Pre-oxidation-tuned microstructures of carbon anodes derived from pitch for enhancing Na storage performance[J]. Advanced Energy Materials, 2018, 8(27): 1800108. |
21 | SADEZKY A, MUCKENHUBER H, GROTHE H, et al. Raman microspectroscopy of soot and related carbonaceous materials: Spectral analysis and structural information[J]. Carbon, 2005, 43(8): 1731-1742. |
22 | YUAN F, SHI C H, LI Q L, et al. Unraveling the effect of intrinsic carbon defects on potassium storage performance[J]. Advanced Functional Materials, 2022, 32(48): 2208966. |
23 | YAO X H, KE Y J, REN W H, et al. Defect-rich soft carbon porous nanosheets for fast and high-capacity sodium-ion storage[J]. Advanced Energy Materials, 2019, 9(6): 1803260. |
24 | TAN W, WANG L N, LIU K, et al. Bitumen-derived onion-like soft carbon as high-performance potassium-ion battery anode[J]. Small, 2022, 18(39): e2203494. |
25 | LIU Z Y, WU S J, SONG Y, et al. Non-negligible influence of oxygen in hard carbon as an anode material for potassium-ion batteries[J]. ACS Applied Materials & Interfaces, 2022, 14(42): 47674-47684. |
26 | YUAN F, ZHANG D, LI Z J, et al. Unraveling the intercorrelation between micro/mesopores and K migration behavior in hard carbon[J]. Small, 2022, 18(12): e2107113. |
27 | AUGUSTYN V, COME J, LOWE M A, et al. High-rate electrochemical energy storage through Li+ intercalation pseudocapacitance[J]. Nature Materials, 2013, 12(6): 518-522. |
28 | LI D P, CHEN L, CHEN L N, et al. Potassium gluconate-derived N/S Co-doped carbon nanosheets as superior electrode materials for supercapacitors and sodium-ion batteries[J]. Journal of Power Sources, 2019, 414: 308-316. |
[1] | Yuhua BIAN, Zhaomeng LIU, Xuanwen GAO, Jianguo LI, Da WANG, Shangzhuo LI, Wenbin LUO. Role of CoS2/NC in ether-based electrolytes as high-performance anodes for sodium-ion batteries [J]. Energy Storage Science and Technology, 2023, 12(5): 1500-1509. |
[2] | Yuwen ZHAO, Huan YANG, Junpeng GUO, Yi ZHANG, Qi SUN, Zhijia ZHANG. Application of magnetic metal elements in sodium ion batteries [J]. Energy Storage Science and Technology, 2023, 12(5): 1332-1347. |
[3] | Junlong ZHOU, Lukang ZHAO, Zhaomeng LIU, Xuanwen GAO, Wenbin LUO. Advances in the research of quantum dots anode for alkali metal ion batteries [J]. Energy Storage Science and Technology, 2023, 12(5): 1392-1408. |
[4] | Yongshi YU, Xianming XIA, Hongyang HUANG, Yu YAO, Xianhong RUI, Guobin ZHONG, Wei SU, Yan YU. Research progress on sodium metal anode modified by artificial interface layer [J]. Energy Storage Science and Technology, 2023, 12(5): 1380-1391. |
[5] | Shangzhuo LI, Yutong LONG, Zhaomeng LIU, Xuanwen GAO, Wenbin LUO. Advances toward polyanionic cathode materials for potassium-ion batteries [J]. Energy Storage Science and Technology, 2023, 12(5): 1348-1363. |
[6] | Junpeng GUO, Qi SUN, Yuefang CHEN, Yuwen ZHAO, Huan YANG, Zhijia ZHANG. Preparation of three-dimensional multistage iron oxide/carbon nanofiber integrated electrode and sodium storage performance [J]. Energy Storage Science and Technology, 2023, 12(5): 1469-1479. |
[7] | Jing ZHU, Xiaoyu SHEN, Guanjun CEN, Ronghan QIAO, Junfeng HAO, Hongxiang JI, Mengyu TIAN, Zhou JIN, Yuanjie ZHAN, Yida WU, Yong YAN, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Feb. 1, 2023 to Mar. 31, 2023) [J]. Energy Storage Science and Technology, 2023, 12(5): 1553-1569. |
[8] | Jingjing RUAN, Fuyuan LIU, Shenshen LI, Guihong GAO, Yanxia LIU. Preparation of rod-like silicon-based material by carbon reduction and its application in lithium slurry batteries [J]. Energy Storage Science and Technology, 2023, 12(4): 1051-1058. |
[9] | Xueli CHENG, Weifu ZHANG, Chengcheng LUO, Xiaoya YUAN. Preparation of three-dimensional graphene/Fe3O4 composites by one-step hydrothermal method and their lithium storage performance [J]. Energy Storage Science and Technology, 2023, 12(4): 1066-1074. |
[10] | Wen ZHANG, Shuang LI, Cheng CHEN, Qiang SHEN. Effect of in situ solidification on the performance of silicon oxide anode [J]. Energy Storage Science and Technology, 2023, 12(4): 1045-1050. |
[11] | Xue YUAN, Hongji LI, Wenhui BAI, Zhengxi LI, Libin YANG, Kai WANG, Zhe CHEN. Application of biomass-derived carbon-based anode materials in sodium ion battery [J]. Energy Storage Science and Technology, 2023, 12(3): 721-742. |
[12] | Shugang LIU, Bo MENG, Zhenglong LI, Yaxiong YANG, Jian CHEN. Electrochemical performance of chemical prelithiated Li x (Mg, Ni, Zn, Cu, Co) 1-x O high-entropy oxide as anode material for lithium ion battery [J]. Energy Storage Science and Technology, 2023, 12(3): 743-753. |
[13] | Xiaoyu SHEN, Jing ZHU, Guanjun CEN, Ronghan QIAO, Junfeg HAO, Mengyu TIAN, Hongxiang JI, Zhou JIN, Yida WU, Yuanjie ZHAN, Yong YAN, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Dec. 1, 2022 to Jan. 31, 2023) [J]. Energy Storage Science and Technology, 2023, 12(3): 639-653. |
[14] | Longjin JIANG, Shun ZHANG, Yu QIAO, Chenzhen LIU, Zhonghao RAO. A review of failure mechanisms and anode graphite recycling from spent lithium-ion batteries [J]. Energy Storage Science and Technology, 2023, 12(3): 822-834. |
[15] | Mengyu TIAN, Yida WU, Junfeng HAO, Jing ZHU, Guanjun CEN, Ronghan QIAO, Xiaoyu SHEN, Hongxiang JI, Zhou JIN, Yuanjie ZHAN, Yong YAN, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG. Reviews of selected 100 recent papers for lithium batteries (Oct. 1, 2022 to Nov. 30, 2022) [J]. Energy Storage Science and Technology, 2023, 12(1): 1-15. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||