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陈港欣等:高功率锂离子电池研究进展 13 capacitors.ChemSusChem,2014,7(11):3138 材料的制备及在锂离子电池中的应用.工程科学学报,2019, [91]Arnaiz M,Shanmukaraj D,Carriazo D,et al.A transversal low- 41(10):1307) cost pre-metallation strategy enabling ultrafast and stable metal ion [96]Wang S J,Liu Q G.Carbonized production of phenolic aldehyde capacitor technologies.Energy Emviron Sci,2020,13(8):2441 as the electrode materials of lithium ion batteries (ii)-analyzed [92]Hwang S W,Yoon W Y.Effect of Li powder-coated separator on of the charge and discharge performance of the lithium ion cells. irreversible behavior of SiO,-C anode in lithium-ion batteries.J Chin J Eng,2000,22(6):533 Electrochem Soc,2014,161(10):A1753 (汪树军,刘庆国.酚醛树脂碳化产物作为锂离子电池碳电极材 [93]Ai G,Wang Z H,Zhao H,et al.Scalable process for application of 料Ⅱ)一锂离子电池充放电性能测试.工程科学学报,2000, stabilized lithium metal powder in Li-ion batteries.J Power 22(6):533) Source5,2016,309:33 [97]Zhang X H,Sun X Z,Zhang X,et al.Prospect of lithium-ion [94]Jezowski P,Crosnier O,Deunf E,et al.Safe and recyclable capacitor application in new energy field.Ad Technol Elecr Eng lithium-ion capacitors using sacrificial organic lithium salt.Nar Energ,2020,39(11):48 Maer,2018,17(2):167 (张晓虎,孙现众,张熊,等.锂离子电容器在新能源领域应用展 [95]An F Q,He D L,Pang ZH,et al.Preparation of silicon /graphite 望.电工电能新技术,2020,39(11):48) carbon composites with fiber carbon and their application in [98]Ajuria J,Aguesse F.An ultrafast battery performing as a lithium-ion batteries.Chin J Eng,2019,41(10):1307 supercapacitor:Electrode tuning for high power performance. (安富强,何冬林,庞铮,等.具有微米纤维碳的硅/石墨碳复合 Electrochimica Acta,2020,334:135587capacitors. ChemSusChem, 2014, 7(11): 3138 Arnaiz  M,  Shanmukaraj  D,  Carriazo  D,  et  al.  A  transversal  low￾cost pre-metallation strategy enabling ultrafast and stable metal ion capacitor technologies. Energy Environ Sci, 2020, 13(8): 2441 [91] Hwang S W, Yoon W Y. Effect of Li powder-coated separator on irreversible  behavior  of  SiOx -C  anode  in  lithium-ion  batteries. J Electrochem Soc, 2014, 161(10): A1753 [92] Ai G, Wang Z H, Zhao H, et al. Scalable process for application of stabilized  lithium  metal  powder  in  Li-ion  batteries. J Power Sources, 2016, 309: 33 [93] Jeżowski  P,  Crosnier  O,  Deunf  E,  et  al.  Safe  and  recyclable lithium-ion  capacitors  using  sacrificial  organic  lithium  salt. Nat Mater, 2018, 17(2): 167 [94] An F Q, He D L, Pang ZH, et al. Preparation of silicon /graphite / carbon  composites  with  fiber  carbon  and  their  application  in lithium-ion batteries. Chin J Eng, 2019, 41(10): 1307 (安富强, 何冬林, 庞铮, 等. 具有微米纤维碳的硅/石墨/碳复合 [95] 材料的制备及在锂离子电池中的应用. 工程科学学报, 2019, 41(10):1307) Wang S J, Liu Q G. Carbonized production of phenolic aldehyde as the electrode materials of lithium ion batteries (ii)——analyzed of the charge and discharge performance of the lithium ion cells. Chin J Eng, 2000, 22(6): 533 (汪树军, 刘庆国. 酚醛树脂碳化产物作为锂离子电池碳电极材 料(Ⅱ)——锂离子电池充放电性能测试. 工程科学学报, 2000, 22(6):533) [96] Zhang  X  H,  Sun  X  Z,  Zhang  X,  et  al.  Prospect  of  lithium-ion capacitor application in new energy field. Adv Technol Electr Eng Energy, 2020, 39(11): 48 (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. 电工电能新技术, 2020, 39(11):48) [97] Ajuria  J,  Aguesse  F.  An  ultrafast  battery  performing  as  a supercapacitor:  Electrode  tuning  for  high  power  performance. Electrochimica Acta, 2020, 334: 135587 [98] 陈港欣等: 高功率锂离子电池研究进展 · 13 ·
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