锂离子电容器碳基电极材料研究进展

党兆涵1,2, 李建刚1,2*, 闫嘉森1,2, 何向明3

化工新型材料 ›› 2022, Vol. 50 ›› Issue (11) : 16 -20.

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化工新型材料 ›› 2022, Vol. 50 ›› Issue (11) : 16-20. DOI: 10.19817/j.cnki.issn1006-3536.2022.11.004
综述与专论

锂离子电容器碳基电极材料研究进展

    党兆涵1,2, 李建刚1,2*, 闫嘉森1,2, 何向明3
作者信息 +

Research progress of carbon-based electrode materials for Li-ion capacitors

  • Dang Zhaohan1,2, Li Jiangang1,2, Yan Jiasen1,2, He Xiangming3
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文章历史 +
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摘要

锂离子电容器兼具了锂离子电池高比能量和电容器高功率的优势,是一种非常有应用前景的新型储能器件。碳材料具有高稳定性和可控结构,已被广泛用作锂离子电容器电极材料。分别综述了锂离子电容器用碳正极材料、碳负极材料的研究进展,展望了主要研究方向。

Abstract

Li-ion capacitors,with combining advantages of high specific energy of Li-ion batteries and high power of capacitors,is a very promising new type of energy storage device.Carbon materials,with high stability and controllable structure,have been widely used as electrode materials for Li-ion capacitors.This article reviewed the research progress of carbon cathode materials and carbon anode materials respectively for Li-ion capacitors,and the main research directions were also discussed.

关键词

锂离子电容器 / 碳基材料 / 多孔结构 / 掺杂 / 复合材料

Key words

Li-ion capacitors / carbon-based materials / porous structure / doping / composite materials

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锂离子电容器碳基电极材料研究进展[J]. 化工新型材料, 2022, 50(11): 16-20 DOI:10.19817/j.cnki.issn1006-3536.2022.11.004

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参考文献

[1] Li M,Lu J,Chen Z,et al.30 Years of lithium-ion batteries[J].Advanced Materials,2018,30(33):e1800561.
[2] Wang H,Zhu C,Chao D,et al.Nonaqueous hybrid lithium-ion and sodium-ion capacitors[J].Advanced Materials,2017,29(46):1702093.
[3] Amatucci G,Badway F,Du Pasquier A,et al.An asymmetric hybrid nonaqueous energy storage cell[J].Journal of the Electrochemical Society,2001,148(8):A930-A939.
[4] Wang X,Liu L,Niu Z.Carbon-based materials for lithium-ion capacitors[J].Materials Chemistry Frontiers,2019,3(7):1265-1279.
[5] Ma Y,Chang H,Zhang M,et al.Graphene-based materials for lithium-ion hybrid supercapacitors[J].Advanced Materials,2015,46(44):5296-5308.
[6] Wang J,Nie P,Ding B,et al.Biomass derived carbon for energy storage devices[J].Journal of Materials Chemistry A,2017,5(6):2411-2428.
[7] Xu J,Gao B,Huo K F,et al.Recent progress in electrode materials for nonaqueous lithium-ion capacitors[J].Journal of Nanoscience and Nanotechnology,2020,20:2652-2667.
[8] 蔡满园,孙晓刚,陈玮,等.以预锂化多壁碳纳米管为负极的锂离子电容器性能[J].材料工程,2019,47(5):149-156.
[9] Sun J,Yang S,Yang C,et al.Corncob-derived hierarchical porous carbons constructed by re-activation for high-rate lithium-ion capacitors[J].New Journal of Chemistry,2019,43(25):10103.
[10] Qian T,Huang Y,Zhang M,et al.Non-corrosive and low-cost synthesis of hierarchically porous carbon frameworks for high-performance lithium-ion capacitors[J].Carbon,2021,173:646-654.
[11] Nursyafarinah N,Junipuspita D,Widayatno W,et al.Low temperature preparation of chicken bone-based porous carbon for lithium-ion capacitor (LIC) cathode[J].Journal of Physics Conference Series,2019,1191(1):012019.
[12] Yang Z,Guo H,Yan G,et al.High-value utilization of lignin to prepare functional carbons toward advanced lithium-ion capacitors[J].ACS Sustainable Chemistry & Engineering,2020,8:11522-11531.
[13] Zhang L L,Zhao X S.Carbon-based materials as supercapacitor electrodes[J].Chemical Society Reviews,2009,38(9):2520-2531.
[14] Shi K,Liu J,Chen R.Nitrogen-doped nano-carbon onion rings for energy storage in lithium-ion capacitors[J].The Journal of Energy Storage,2020,31:101609.
[15] Kong L,Su L,Hao S,et al.Graphene-like nitrogen-doped porous carbon nanosheets as both cathode and anode for high energy density lithium-ion capacitor[J].Electrochimica Acta,2020,349:136303.
[16] Chen M,Le T H,Zhou Y,et al.Thiourea-induced N/S dual-doped hierarchical porous carbon nanofibers for high-performance lithium-ion capacitors[J].ACS Applied Energy,Materials,2020,3:1653-1664.
[17] Cai M,Sun X,Chen W,et al.Performance of lithium-ion capacitors using pre-lithiated multiwalled carbon nanotubes/graphite composite as negative electrode[J].Journal of Materials Science,2018,53:749-758.
[18] Han C,Shi R,Zhou D,et al.High-energy and high-power nonaqueous lithium-ion capacitors based on polypyrrole/carbon nanotube composites as pseudocapacitive cathodes[J].ACS Applied Materials & Interfaces,2019,11(17):15646-15655.
[19] Li B,Zhang H,Zhang C.Agricultural waste-derived activated carbon/graphene composites for high performance lithium-ion capacitors[J].RSC Advances,2019,9(50):29190-29194.
[20] Han C,Li H F,Shi R,et al.Nanostructured anode materials for non-aqueous lithium-ion hybrid capacitors[J].Energy & Environmental Materials,2018,1(2):75-87.
[21] Boltersdorf J,Delp S A,Yan J,et al.Electrochemical performance of lithium-ion capacitors evaluated under high temperature and high voltage stress using redox stable electrolytes and additives[J].Journal of Power Sources,2017,373:20-30.
[22] Sun X,Zhang X,Liu W,et al.Electrochemical performances and capacity fading behaviors of activated carbon/hard carbon lithium-ion capacitor[J].Electrochimica Acta,2017,235:158-166.
[23] Sennu P,Arun N,Madhavi S,et al.All carbon-based high-energy lithium-ion capacitors from biomass:the role of crystallinity[J].Journal of Power Sources,2019,414(28):96-102.
[24] Buiel E,Dahn J R.Li-insertion in hard carbon anode materials for Li-ion batteries[J].Electrochimica Acta,1999,45(1-2):121-130.
[25] Kim J H,Kim J S,Lim Y G,et al.Effect of carbon types on the electrochemical properties of negative electrodes for Li-ion capacitors[J].Journal of Power Sources,2011,196(23):10490-10495.
[26] Arnaiz M,Nair V,Mitra S,et al.Furfuryl alcohol derived high-end carbons for ultrafast dual carbon lithium-ion capacitors[J].Electrochimica Acta,2019,304:437-446.
[27] Parthiban P,Karthikeyan K,Sudhakaran M S P,et al.Fabrication of high-performance aqueous Li-ion hybrid capacitor with LiMn2O4 and graphene[J].Chemelectrochem,2016,4(2):396-403.
[28] Allen M J,Tung V C,Kaner R.Honeycomb carbon-a review of graphene[J].Chemical Reviews,2009,110(1):132-145.
[29] Gao H,Wang J,Zhang R,et al.An aqueous hybrid lithium-ion capacitor based on activated graphene and modified LiFePO4 with high specific capacitance[J].Materials Research Express,2019,6(4):045509.
[30] Jiang J,Zhang Y,Li Z,et al.Defect-rich and N-doped hard carbon as a sustainable anode for high-energy lithium-ion capacitors[J].Journal of Colloid and Interface Science,2020,567:75-83.
[31] Li C,Zhang X,Sun C,et al.Recent progress of graphene-based materials in lithium-ion capacitors[J].Journal of Physics D:Applied Physics,2019,52(14):143001.
[32] Moreno-Fernández M,Granados-Moreno M,Gómez-Urbano J L,et al.Phosphorus-functionalized graphene for power and cyclability improved lithium-ion capacitors[J].Batteries & Supercaps,2020,4(3),DOI:10.1002/batt.202000247.
[33] Sun Y,Ma J,Yang X,et al.Sulfur covalently bonded to porous graphitic carbon as an anode material for lithium-ion capacitors with high energy storage performance[J].Journal of Materials Chemistry A,2019,8:62-68.
[34] Li L,Jia C,Shao Z,et al.Low-cost and robust production of multi-doped 2D carbon nanosheets for high-performance lithium-ion capacitors[J].Chemical Engineering Journal,2019,370:508-517.
[35] Su F,Hou X,Qin J,et al.Recent advances and challenges of two-dimensional materials for high-energy and high-power lithium-ion capacitors[J].Batteries & Supercaps,2020,3(1):10-29.
[36] An Y B,Chen S,Zou M M,et al.Improving anode performances of lithium-ion capacitors employing carbon-Si composites[J].Rare Metals,2019,38(12):1113-1123.
[37] Temeche E,Yu M,Laine R M.Silica depleted rice hull ash (SDRHA),an agricultural waste,as a high-performance hybrid lithium-ion capacitor[J].Green Chemistry,2020,22(14):4656-4668.
[38] Aphirakaramwong C,Phattharasupakun N,Suktha P,et al.Lightweight multi-walled carbon nanotube/N-doped graphene aerogel composite for high-performance lithium-ion capacitors[J].Journal of the Electrochemical Society,2019,166(4):A532-A538.
[39] Gómez-Urbano J,Moreno-Fernández G,Arnaiz M,et al.Graphene-coffee waste derived carbon composites as electrodes for optimized lithium-ion capacitors[J].Carbon,2020,162:273-282.
[40] Lee S H,Yoo G,Cho J,et al.Expanded graphite/copper oxide composite electrodes for cell kinetic balancing of lithium-ion capacitor[J].Journal of Alloys and Compounds,2020,829:154566.
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