Development of multi-component Co3O4-ZnO hybrid nanomaterials for high-performance lithium-ion batteries: The role of g-C3N4, GO and Ag

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초록

The advancement of lithium-ion batteries (LIBs) with superior performance is essential to support a wide range of applications, including portable electronic devices, electric vehicles, and large-scale energy storage solutions. Among the promising advancements, the integration of multiple nanomaterials-such as silver (Ag), graphitic carbon nitride (g-C3N4), and graphene oxide (GO) doped with cobalt-zinc (Co-Zn) hybrid nanostructures-marks a significant leap forward. These multi-component hybrid nanomaterials leverage the unique properties of each constituent to address challenges such as low conductivity, volume expansion, and limited cycling stability associated with traditional anode materials. Ag, g-C3N4, and GO-doped Co3O4-ZnO hybrid nanomaterials represent a transformative advancement in lithium anode technology. Their enhanced conductivity, catalytic activity, lithium storage capacity, and structural stability significantly improve electrochemical performance, offering higher specific capacities, better rate capabilities, and longer cycle lives. Furthermore, the ability to tune the material's properties through precise synthesis methods enhances their adaptability for various energy storage needs. By addressing the shortcomings of traditional anode materials, these innovative nanomaterials offer significant potential to transform the efficiency, reliability, and sustainability of lithium-ion batteries (LIBs), enabling the development of more effective and eco-friendly energy storage technologies.

키워드

Lithium-ion batteriesCo-Zn hybrid nanomaterialsGraphitic carbon nitride (gC 3 N 4 )Graphene oxide (GO)Silver nanoparticleGRAPHENEFRAMEWORKSOXIDE
제목
Development of multi-component Co3O4-ZnO hybrid nanomaterials for high-performance lithium-ion batteries: The role of g-C3N4, GO and Ag
저자
Tran, Quang NhatPark, Chan HoLee, Sang-WhaTran, Vy Anh
DOI
10.1016/j.mtchem.2025.102721
발행일
2025-06
유형
Article
저널명
MATERIALS TODAY CHEMISTRY
46