4.6 Article

High energy density primary cathode with a mixed electron/ion interface

Journal

MATERIALS HORIZONS
Volume 9, Issue 11, Pages 2893-2900

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2mh00635a

Keywords

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Funding

  1. National Nature Science Foundation of China [21790050, 21790051]
  2. National Key Research and Development Project of China [2018YFA0703501]
  3. Key Program of the Chinese Academy of Sciences [QYZDY-SSW-SLH015]

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An effective two-dimensional encapsulation strategy was used to prepare a high-performance fluorinated carbon cathode. The obtained cathode showed outstanding charge transport kinetics, lithium-ion diffusion dynamics, and improved voltage platform, battery rate performance, and energy density.
An effective and original strategy described as two-dimensional encapsulation is designed to prepare a high-performance fluorinated carbon cathode composed of a fluorinated carbon/graphdiyne heterostructure (CFx/GDY). The GDY layers of CFx/GDY strengthened the three-dimensional contacts between the CFx particles and additive, achieving outstanding charge transport kinetics and accelerating the lithium-ion diffusion dynamic behavior. The obtained electrodes exhibited a significantly enhanced voltage platform of similar to 2.5 V, improved battery rate performance (5C, 621.6 mA h g(-1)) and energy density with 2039.3 W h kg(-1). The excellent storage kinetics can be ascribed to the electronic structure modulation of fluorinated carbon from GDY, and the hierarchical porosity of GDY to create an effective, stable electron transfer and robust ion transportation. Our results demonstrated that two-dimensional GDY encapsulation has enormous potential in improving the performance of lithium primary batteries.

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