1 |
邹才能,赵群,张国生,等.能源革命:从化石能源到新能源[J].天然气工业,2016,36(1):1⁃10.
|
|
Zou C N,Zhao Q,Zhang G S,et al.Energy revolution: From a fossil energy era to a new energy era[J].Natural Gas Industry,2016,36(1):1⁃10.
|
2 |
Dunn B,Kamath H,Tarascon J M.Electrical energy storage for the grid: A battery of choices[J].Science,2011,334(6058):928⁃935.
|
3 |
张宝锋,童博,冯仰敏,等.电化学储能在新能源发电侧的应用分析[J].热力发电,2020,49(8):13⁃18.
|
|
Zhang B F,Tong B,Feng Y M,et al.Application analysis of electrochemical energy storage technology in new energy power generation side[J].Thermal Power Generation,2020,49(8):13⁃18.
|
4 |
乔亮波,张晓虎,孙现众,等.电池⁃超级电容器混合储能系统研究进展[J].储能科学与技术,2022,11(1):98⁃106.
|
|
Qiao L B,Zhang X H,Sun X Z,et al.Advances in battery⁃supercapacitor hybrid energy storage system[J].Energy Storage Science and Technology,2022,11(1):98⁃106.
|
5 |
张晓虎,孙现众,张熊,等.锂离子电容器在新能源领域应用展望[J].电工电能新技术,2020,39(11):48⁃58.
|
|
Zhang X H,Sun X Z,Zhang X,et al.Prospect of lithium⁃ion capacitor application in new energy field[J].Advanced Technology of Electrical Engineering and Energy,2020,39(11):48⁃58.
|
6 |
Tarascon J M,Armand M.Issues and challenges facing rechargeable lithium batteries[J].Nature,2001,414(6861):359⁃367.
|
7 |
Cheng H,Shapter J G,Li Y Y,et al.Recent progress of advanced anode materials of lithium⁃ion batteries[J].Journal of Energy Chemistry,2021,57:451⁃468.
|
8 |
Li H,Wang Z X,Chen L Q,et al.Research on advanced materials for Li⁃ion batteries[J].Advanced Materials,2009,21(45):4593⁃4607.
|
9 |
沈紫烨,王利娟.高比容量Li2ZnTi3O8@C⁃N负极材料储锂性能研究[J].石油化工高等学校学报,2022,35(3):1⁃9.
|
|
Shen Z Y, Wang L J.Li⁃storage of Li2ZnTi3O8@C⁃N anode materials with high specific capacities[J].Journal of Petrochemical Universities,2022,35(3):1⁃9.
|
10 |
Solomon P R,Fletcher T H,Pugmire R J,et al.Progress in coal pyrolysis[J].Fuel,1993,72(5):587⁃597.
|
11 |
Schobert H H,Song C.Chemicals and materials from coal in the 21st century[J].Fuel,2002,81(1):15⁃32.
|
12 |
Mathews J P,Chaffee A L.The molecular representations of coal⁃A review[J].Fuel,2012,96(1):1⁃14.
|
13 |
Sonibare O O,Haeger T,Foley S F.Structural characterization of nigerian coals by X⁃ray diffraction,Raman and FTIR spectroscopy[J].Energy,2010,35(12):5347⁃5353.
|
14 |
Haenel M W.Recent progress in coal structure research[J].Fuel,1992,71(11):1211⁃1223.
|
15 |
Vasireddy S,Morreale B,Cugini A,et al.Clean liquid fuels from direct coal liquefaction: Chemistry, catalysis, technological status and challenges[J].Energy & Environmental Science,2011,4(2):311⁃345.
|
16 |
Irisarri E,Ponrouch A,Palacin M R.Review⁃hard carbon negative electrode materials for sodium⁃ion batteries[J].Journal of the Electrochemical Society,2015,162(14):A2476⁃A2482.
|
17 |
Jian Z,Hwang S,Li Z F,et al.Hard⁃soft composite carbon as a long⁃cycling and high⁃rate anode for potassium⁃ion batteries[J].Advanced Functional Materials, 2017,27(26):1700324.
|
18 |
Sun N,Liu H,Xu B.Facile synthesis of high performance hard carbon anode materials for sodium ion batteries[J].Journal of Materials Chemistry A,2015,3(41):20560⁃20566.
|
19 |
Zhao C X,Li H,Zou Y J,et al.Low⁃cost carbon materials as anode for high⁃performance potassium⁃ion batteries[J].Materials Letters,2020,262:127147.
|
20 |
Xiao J,Li F C,Zhong Q F,et al.Effect of high⁃temperature pyrolysis on the structure and properties of coal and petroleum coke[J].Journal of Analytical and Applied Pyrolysis,2016,117:64⁃71.
|
21 |
Kim Y,Yang H,Yoon S,et al.Anthracite as a candidate for lithium ion battery anode[J].Journal of Power Sources,2003,113(1):157⁃165.
|
22 |
Liu X Y,Tao H C,Tang C Y,et al.Anthracite⁃derived carbon as superior anode for lithium/potassium⁃ion batteries[J].Chemical Engineering Science,2022,248:117200.
|
23 |
Scrosati B,Garche J.Lithium batteries: Status, prospects and future[J].Journal of Power Sources,2010,195(9):2419⁃2430.
|
24 |
陈港欣,孙现众,张熊,等.高功率锂离子电池研究进展[J].工程科学学报,2022,44(4):612⁃624.
|
|
Chen G X,Sun X Z,Zhang X,et al.Progress of high⁃power lithium⁃ion batteries[J].Chinese Journal of Engineering,2022,44(4):612⁃624.
|
25 |
王立超,张晓虎,张熊,等.高功率锂离子电池负极材料研究进展[J].电源技术,2021,45(9):1213⁃1215.
|
|
Wang L C,Zhang X H,Zhang X,et al.Review of anode materials for high⁃power lithium⁃ion battery[J].Chinese Journal of Power Sources,2021,45(9):1213⁃1215.
|
26 |
Cameán I,Lavela P,Tirado J L,et al.On the electrochemical performance of anthracite⁃based graphite materials as anodes in lithium⁃ion batteries[J].Fuel,2010,89(5):986⁃991.
|
27 |
Xing B L,Zhang C T,Cao Y J,et al.Preparation of synthetic graphite from bituminous coal as anode materials for high performance lithium⁃ion batteries[J].Fuel Processing Technology,2018,172:162⁃171.
|
28 |
Shi M,Song C L,Tai Z G,et al.Coal⁃derived synthetic graphite with high specific capacity and excellent cyclic stability as anode material for lithium⁃ion batteries[J].Fuel,2021,292:120250.
|
29 |
Tang L,Mao Q Y,You Z H,et al.Catalytic graphitization in anthracite by reduced iron particles and investigating the mechanism of catalytic transformation via molecular dynamics[J].Carbon,2022,188:336⁃348.
|
30 |
Deng R Y,Chu F L,Yu H Y,et al.Electrochemical performance of expanded graphite prepared from anthracite via a microwave method[J].Fuel Processing Technology,2022,227:107100.
|
31 |
Nishihara H,Kyotani T.Templated nanocarbons for energy storage[J].Advanced Materials,2012,24(33):4473⁃4498.
|
32 |
Ni J F,Li Y.Carbon nanomaterials in different dimensions for electrochemical energy storage[J].Advanced Energy Materials,2016,6(17) :1600278.
|
33 |
Xu Z X,Deng W J,Wang X L.3D hierarchical carbon⁃rich micro⁃/nanomaterials for energy storage and catalysis[J].Electrochemical Energy Reviews,2021,4(2):269⁃335.
|
34 |
Qiu J S,Li Y F,Wang Y P,et al.A novel form of carbon micro⁃balls from coal[J].Carbon,2003,41(4):767⁃772.
|
35 |
Zheng T,Xing W,Dahn J R.Carbons prepared from coals for anodes of lithium⁃ion cells[J].Carbon,1996,34(12):1501⁃1507.
|
36 |
Ye R Q,Xiang C S,Lin J,et al.Coal as an abundant source of graphene quantum dots[J].Nature Communications,2013, 4(1):1⁃7.
|
37 |
Cheng Y,Li P,Zhang Q B,et al.Top⁃down fabrication of small carbon nanotubes[J].Nanoscale Horizons,2019,4(6):1310⁃1317.
|
38 |
Baughman R H,Zakhidov A A,De Heer W A.Carbon nanotubes⁃the route toward applications[J].Science,2002,297(5582):787⁃792.
|
39 |
Thostenson E T,Ren Z F,Chou T W.Advances in the science and technology of carbon nanotubes and their composites: A review[J].Composites Science and Technology,2001,61(13):1899⁃1912.
|
40 |
De Volder M F L,Tawfick S H,Baughman R H,et al.Carbon nanotubes: Present and future commercial applications[J].Science,2013,339(6119):535⁃539.
|
41 |
Iijima S.Helical microtubules of graphitic carbon[J].Nature,1991,354(6348):56⁃58.
|
42 |
Li J,Cao Y L,Wang L X,et al.Cost⁃effective synthesis of bamboo⁃structure carbon nanotubes from coal for reversible lithium storage[J].RSC Advances,2017,7(55):34770⁃34775.
|
43 |
Moothi K,Iyuke S E,Meyyappan M,et al.Coal as a carbon source for carbon nanotube synthesis[J].Carbon,2012,50(8):2679⁃2690.
|
44 |
Williams K A,Tachibana M,Allen J L,et al.Single⁃wall carbon nanotubes from coal[J].Chemical Physics Letters,1999,310(1):31⁃37.
|
45 |
Hoang V C,Hassan M,Gomes V G.Coal derived carbon nanomaterials⁃recent advances in synthesis and applications[J].Applied Materials Today,2018,12:342⁃358.
|
46 |
Chen L F,Zhang X D,Liang H W,et al.Synthesis of nitrogen⁃doped porous carbon nanofibers as an efficient electrode material for supercapacitors[J].ACS Nano,2012,6(8):7092⁃7102.
|
47 |
Qie L,Chen W M,Wang Z H,et al.Nitrogen⁃doped porous carbon nanofiber webs as anodes for lithium ion batteries with a superhigh capacity and rate capability[J].Advanced Materials,2012,24(15):2047⁃2050.
|
48 |
王光鑫,李华,赵桂艳,等.碳系导电纳米材料填充高分子导电复合材料及其研究进展[J].石油化工高等学校学报,2020,33(5):1⁃7.
|
|
Wang G X,Li H,Zhao G Y,et al.Progress of carbonaceous conductive nanomaterials filled conductive polymer composites[J].Journal of Petrochemical Universities,2020,33(5):1⁃7.
|
49 |
He Y T,Wang L X,Jia D Z.Coal/PAN interconnected carbon nanofibers with excellent energy storage performance and electrical conductivity[J].Electrochimica Acta,2016,194:239⁃245.
|
50 |
Zhao H Y,Wang L X,Jia D Z,et al.Coal based activated carbon nanofibers prepared by electrospinning[J].J. Mater. Chem. A,2014,2(24):9338⁃9344.
|
51 |
Zhao X J,Jia W,Wu X Y,et al.Ultrafine MoO3 anchored in coal⁃based carbon nanofibers as anode for advanced lithium⁃ion batteries[J].Carbon,2020,156:445⁃452.
|
52 |
Geim A K,Novoselov K S.The rise of graphene[J].Nature Materials,2007,6(3):183⁃191.
|
53 |
Geim A K.Graphene: Status and prospects[J].Science,2009,324(5934):1530⁃1534.
|
54 |
李晨,张熊,王凯,等.三维石墨烯网络在超级电容器中的应用[J].新型炭材料,2015,30(3):193⁃206.
|
|
Li C,Zhang X,Wang K,et al.Three dimensional graphene networks for supercapacitor electrode materials[J].New Carbon Materials,2015,30(3):193⁃206.
|
55 |
胡涛,张熊,安亚斌,等.锂离子电容器碳正极材料的研究进展[J].化工学报,2020,71(6):2530⁃2546.
|
|
Hu T,Zhang X,An Y B,et al.Research progress of carbon cathode materials for Li⁃ion capacitors[J].CIESC Journal,2020,71(6):2530⁃2546.
|
56 |
Allen M J,Tung V C,Kaner R B.Honeycomb carbon: A review of graphene[J].Chemical Reviews,2010,110(1):132⁃145.
|
57 |
阳虹,马章楠,张玉贵,等.煤基石墨烯制备与应用研究进展[J].河南理工大学学报(自然科学版),2022,41(4):166⁃175.
|
|
Yang H,Ma Z N,Zhang Y G,et al.Research progress in preparation and application of coal⁃based graphene[J].Journal of Henan Polytechnic University(Natural Science),2022,41(4):166⁃175.
|
58 |
Zhou Q,Zhao Z B,Zhang Y T,et al.Graphene sheets from graphitized anthracite coal: Preparation, decoration, and application[J].Energy & Fuels,2012,26(8):5186⁃5192.
|
59 |
Awasthi S,Awasthi K,Ghosh A K,et al.Formation of single and multi⁃walled carbon nanotubes and graphene from Indian bituminous coal[J].Fuel,2015,147:35⁃42.
|
60 |
Vijapur S H,Wang D,Ingram D C,et al.An investigation of growth mechanism of coal derived graphene films[J].Materials Today Communications,2017,11:147⁃155.
|
61 |
Vijapur S H,Wang D,Botte G G.Raw coal derived large area and transparent graphene films[J].ECS Solid State Letters,2013,2(7):M45⁃M47.
|
62 |
Xing B L,Zeng H H,Huang G X,et al.Porous graphene prepared from anthracite as high performance anode materials for lithium⁃ion battery applications[J].Journal of Alloys and Compounds,2019,779:202⁃211.
|
63 |
Zhang Y T,Zhang K B,Jia K L,et al.Preparation of coal⁃based graphene quantum dots/α⁃Fe2O3 nanocomposites and their lithium⁃ion storage properties[J].Fuel,2019,241:646⁃652.
|
64 |
李君,曹亚丽,王鲁香,等.煤基球形多孔碳用于锂离子电池负极材料的性能研究[J].无机材料学报,2017,32(9):909⁃915.
|
|
Li J,Cao Y L,Wang L X,et al.Performance of coal⁃derived spherical porous carbon as anode materials for lithium ion batteries[J].Journal of Inorganic Materials,2017,32(9):909⁃915.
|
65 |
Zhang S,Zhu J Y,Qing Y,et al.Construction of hierarchical porous carbon nanosheets from template⁃assisted assembly of coal⁃based graphene quantum dots for high performance supercapacitor electrodes[J].Materials Today Energy,2017,6:36⁃45.
|
66 |
Wang K F,Qian J,Sun F,et al.In⁃situ catalytic conversion of coal pyrolysis gas to nanoporous carbon rods and superior sodium ion storage performance[J].Fuel,2020,281:118782.
|
67 |
Chen J F,Feng J M,Dong L,et al.Nanoporous coal via Ni⁃catalytic graphitization as anode materials for potassium ion battery[J].Journal of Electroanalytical Chemistry,2020,862:113902.
|