Researchers from China’s Guizhou University, Liupanshui Normal University and Moutai Institute have developed a composite combining needle-shaped Nickel Metal-Organic Framework (Ni-MOF) with graphene (GR), to enhance lithium-ion battery anodes by addressing conductivity and structural stability challenges.
The integration of graphene reportedly boosts conductivity by eight orders of magnitude and improves charge transfer, leading to remarkable electrochemical performance, including higher capacity, better rate capability, and superior cycling stability compared to pristine Ni-MOF.
Researchers from China’s Guizhou University, Liupanshui Normal University and Moutai Institute have developed a composite combining needle-shaped Nickel Metal-Organic Framework (Ni-MOF) with graphene (GR), to enhance lithium-ion battery anodes by addressing conductivity and structural stability challenges. The integration of graphene reportedly boosts conductivity by eight orders of magnitude and improves charge transfer, leading to remarkable electrochemical performance, including higher capacity, better rate capability, and superior cycling stability compared to pristine Ni-MOF.
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