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      KCI등재 SCOPUS SCIE

      Fabrication of polyacrylic acid-based composite binders with strong binding forces on copper foils for silicon anodes in lithium-ion batteries

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      https://www.riss.kr/link?id=A108623546

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      다국어 초록 (Multilingual Abstract)

      The commercial application of silicon (Si) anodes with high theoretical capacity is hampered by the poorcyclic stability because the huge volume change of Si during discharge/charge processes results in thepulverization of electrode materials and the ...

      The commercial application of silicon (Si) anodes with high theoretical capacity is hampered by the poorcyclic stability because the huge volume change of Si during discharge/charge processes results in thepulverization of electrode materials and the electric contact loss of electrode materials with copper(Cu) foils. Binders play an important role for adhering active materials and conductive additives togetheronto Cu foils. Herein, we design and develop a three-dimensional networked composite binder (PAA-co-SN) via an amidation reaction between polyacrylic acid (PAA) and thiourea (SN). The granular anchors(CuxS) are constructed at the interface between PAA-co-SN binders and Cu foils, resulting from the reactionof S and Cu during the drying processes of Si electrodes. When used as binders for Si nanoparticles,they exhibit stable cyclic performance (1580 mAh g1 after 500 cycles). The anchoring mechanismbetween composite binders and Cu foils provides a strategy for the improvement of electrochemicalproperties of Si-based anodes for lithium-ion batteries.

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      참고문헌 (Reference) 논문관계도

      1 G. G. Eshetu, 12 : 1-14, 2021

      2 X. Peng, 2 : 579-590, 2021

      3 J. Guo, 31 : 2102546-, 2021

      4 W. F. Ren, 18 : 46-54, 2019

      5 Y. He, 16 : 1113-1120, 2021

      6 F. Shuang, 13 : 21310-21319, 2021

      7 Z. Zhang, 42 : 231-239, 2021

      8 Z. Cao, 33 : 2103178-, 2021

      9 W. F. Ren, 5 : 3258-3265, 2018

      10 Y. Cui, 6 : 995-996, 2021

      1 G. G. Eshetu, 12 : 1-14, 2021

      2 X. Peng, 2 : 579-590, 2021

      3 J. Guo, 31 : 2102546-, 2021

      4 W. F. Ren, 18 : 46-54, 2019

      5 Y. He, 16 : 1113-1120, 2021

      6 F. Shuang, 13 : 21310-21319, 2021

      7 Z. Zhang, 42 : 231-239, 2021

      8 Z. Cao, 33 : 2103178-, 2021

      9 W. F. Ren, 5 : 3258-3265, 2018

      10 Y. Cui, 6 : 995-996, 2021

      11 W. F. Ren, 48 : 160-168, 2020

      12 P. Wang, 15 : 1903522-, 2019

      13 T. Liu, 9 : 1802645-, 2019

      14 L. Zhao, 17 : 2102316-, 2021

      15 J. Lopez, 4 : 312-330, 2019

      16 T. W. Kwon, 47 : 2145-2164, 2018

      17 J. T. Li, 7 : 1701185-, 2017

      18 X. Yu, 7 : 15961-15967, 2015

      19 T. Liu, 9 : 1802645-, 2019

      20 B. Jin, 31 : 2104433-, 2021

      21 S. Wu, 6 : 290-297, 2021

      22 L. Zhang, 484 : 2021

      23 Z. Li, 79 : 2021

      24 X. Jiao, 4 : 10306-10313, 2021

      25 Y. Wang, 38 : 121-129, 2021

      26 X. Liu, 565 : 270-277, 2020

      27 K. Rajeev, 384 : 2021

      28 J. Liu, 25 : 3599-3605, 2015

      29 C. H. Jung, 11 : 26753-26763, 2019

      30 S. Qi, 11 : 14142-14149, 2019

      31 D. Reyter, 239 : 308-314, 2013

      32 H. Shang, 30 : 1801459-, 2018

      33 I. Cho, 6 : 30945-, 2016

      34 W. F. Ren, 13 : 639-649, 2021

      35 W. Porcher, 164 : A3633-A3640, 2017

      36 W. J. Vanooij, 82 : 315-339, 2009

      37 W. S. Fulton, 78 : 426-457, 2005

      38 C. Xu, 27 : 2591-2599, 2015

      39 Y. Jin, 140 : 9854-9867, 2018

      40 양호성 ; 이병선 ; 유웅렬, "Simple design of a Si–Sn–C ternary composite anode for Li-ion batteries" 한국공업화학회 98 : 275-282, 2021

      41 Nurzhan Umirov ; 서덕호 ; 김태근 ; 김향연 ; 김성수, "Microstructure and electrochemical properties of rapidly solidified Si–Ni alloys as anode for lithium-ion batteries" 한국공업화학회 71 : 351-360, 2019

      42 이선영 ; 최연주 ; 권세훈 ; 배종성 ; 정의덕, "Cracking resistance and electrochemical performance of silicon anode on binders with different mechanical characteristics" 한국공업화학회 74 : 216-222, 2019

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