4.8 Article

Synergistic Double Cross-Linked Dynamic Network of Epoxidized Natural Rubber/Glycinamide Modified Polyacrylic Acid for Silicon Anode in Lithium Ion Battery: High Peel Strength and Super Cycle Stability

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 14, Issue 29, Pages 33315-33327

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.2c08038

Keywords

lithium-ion battery; silicon anode; double cross-linked binder; elastic polymer; high discharge capacity

Funding

  1. Natural Science Foundation of Shandong Province [ZR2020QE072]
  2. Qingdao Key RD Program [21-1-2-8-cl]
  3. Shandong Natural Science Excellent Youth Fund [ZR2019YQ22]
  4. Introduction and Cultivation Plan of Young Innovative Talents in Colleges and Universities of Shandong Province [12030431070008]

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A double cross-linked product was developed as a water-based binder to reduce the volume change of silicon (Si) anode material during cycling. The binder effectively dispersed and transferred the stress generated by the volume expansion of Si particles, maintaining the integrity of the electrode and achieving excellent cycle performance.
Silicon (Si), a high-capacity lithium-ion battery anode material, has aroused wide attention. Its further practical application has been limited by its huge volume change during the cycle. To reduce this defect, the double cross-linked product of glycinamide hydrochloride modified poly(acrylic acid) (PAG) and epoxidized natural rubber (ENR) was developed as a water-based binder to obtain sufficient elasticity and a sufficiently strong adhesive force. Due to the double cross-linked structures in the system, the binder was enabled to effectively disperse and transfer the stress generated by the volume expansion of the Si particles and keep the integrity of the electrode during the cycle, thus obtaining excellent cycle performance. When the current density was 1 A g(-1), PE55 (PAG: ENR = 1:1 cross-linked polymer) electrode still achieved a specific capacity of 2322.2 mAh g(-1) after 100 cycles of constant current charge and discharge, and PE55 binder exhibited excellent bonding properties (4.45 N) and mechanical properties (stress: 5.51 MPa, strain: 87.4%). The comparison of poly(acrylic acid) (PAA) electrodes suggests that the introduction of elastic polymer and the construction of double cross-linked structures can increase the stability of Si anodes.

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