Published January 1, 2025 | Version v1
Journal article Open

Enhanced performance of lithium-ion battery cathodes using a composite conductive network of CNTs, GQDs, and GNRs embedded in Li<sub>1.2</sub>Mn<sub>0. 54</sub>Ni<sub>0.13</sub>Co<sub>0.13</sub>O<sub>2</sub> (LMNCO)

  • 1. Forman Christian Coll, Dept Phys, Lahore, Pakistan
  • 2. COMSATS Univ Islamabad, Dept Phys, Lahore Campus, Lahore, Pakistan
  • 3. Gebze Tech Univ, Dept Mech Engn, Gebze, Turkiye
  • 4. Gebze Tech Univ, Inst Energy Technol, Gebze, Turkiye
  • 5. Hazerfen KMETSTAS, Istanbul, Turkiye
  • 6. Khalifa Univ, Dept Phys, POB 127788, Abu Dhabi, U Arab Emirates
  • 7. Univ Maryland, Dept Chem & Biochem, College Pk, MD 20742 USA
  • 8. Quaid Eazam Univ, Natl Ctr Phys, Nanotechnol Lab, Islamabad, Pakistan

Description

Lithium-rich Li-ion battery cathode materials are known for their high specific capacities and working potential. However, their practical application is limited by the significant decline in discharge potential and capacity during repeated cycling. In this study, we introduce a highly conductive electrode architecture, encapsulating within carbon nanotubes (CNTs), graphene nano-ribbons (GNRs) and graphene quantum dots (GQDs) to mitigate rapid capacity fading and suppress voltage decay. Three Li1.2Mn0. 54Ni0.13Co0.13O2 cathode materials were synthesized. The first sample, pristine Li1.2Mn0. 54Ni0.13Co0.13O2, was synthesized using a nitrate co- precipitation method. The second cathode, GNRs-CNTs@Li1.2Mn0. 54Ni0.13Co0.13O2, incorporates a mixture of carbon nanotubes and graphene nanoribbons. The third cathode, GQDs:GNRs-CNTs@Li1.2Mn0. 54Ni0.13Co0.13O2), further integrates graphene quantum dots within the graphene nanoribbons and carbon nanotubes matrix. The inclusion of highly conductive GNRs-CNTs and GQDs effectively enhances the electrical conductivity of Li1.2Mn0. 54Ni0.13Co0.13O2, increasing the specific capacity from 246.95 to 316.94 mAhg(-1). Additionally, GQDs prevent side reactions and surface phase transitions, thereby improving thermal stability.

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