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Poly (Propylene Carbonate) with Extremely Alternating Structure Used as Binders for High-Loading Cathodes by Solvent-Free Method in High-Performance NCM811 Batteries. | LitMetric

AI Article Synopsis

  • - The cathode plays a critical role in lithium-ion batteries, influencing capacity, voltage, and cost, with the binder, though small in quantity, being essential for performance.
  • - This study presents a solvent-free method for creating an NCM811 cathode using poly (propylene carbonate) (PPC) as a binder, achieving 112.2 mAh/g discharge capacity and 76.1% capacity retention after over 200 cycles.
  • - The PPC binder enhances the cycling stability of lithium batteries and simplifies electrode preparation and recovery, offering promising insights for future industrial applications of battery technology.

Article Abstract

The cathode affects the capacity, working voltage, and cost of lithium-ion batteries. Although the binder is a small part of the cathode material, it is particularly important to the performance of the batteries. Therefore, the design and development of polymer binders with different structures and characteristics is an important topic. In this paper, an NCM811 cathode (PPC-NCM) was prepared by a solvent-free method using poly (propylene carbonate) (PPC) as the binder, with an active substance loading of 10 mg/cm. To explore the effect of the PPC binder on the electrochemical performance of the NCM811 cathode, the discharge capacity was 112.2 mAh/g with a 76.1% capacity retention after cycling more than 200 cycles at 1 C, which has a significantly better cycling performance than that of a PVDF-NCM/Li battery. The PPC/NCM/graphite full cells were also assembled to demonstrate the practical application potential of this work. It was shown that PPC as a binder can improve the cycling stability of NCM811/Li and NCM811/graphite full cells. The PPC binder used in the NCM811 cathode not only makes it extremely easy to prepare dry electrodes, but also makes it very simple to recover the electrode material by heating in the case of battery failure. This paper provides a new idea for the industrialization and development of a novel binder.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11595452PMC
http://dx.doi.org/10.3390/ma17225466DOI Listing

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