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However, most of the ternary metal oxides suffer from the problem of poor electronic conductivity, and need to be modified by an electronically conductive agent, such as carbon nanotubes or graphene [18].
However, its poor electronic conductivity significantly limits its rate capability.
Nevertheless, poor electronic conductivity impedes its application for energy storage.
Li2MnSiO4 is predicted to have a poor electronic conductivity.
However, the catalytic activity of MnCo2O4 is limited by its poor electronic conductivity.
However, the low theoretical capacity and poor electronic conductivity of CeO2 hinder its practical application.
Exotic metal (EM) doping in LiFePO4 materials could mitigate their poor electronic conductivity and electrochemical performance.
Poor electronic and ionic conductivities of electrode limit the development of pseudocapacitor.
However, the inherent sluggish Li-ion diffusion and particularly poor electronic conductivity limit its practical applications.
Nevertheless, it remains a practical challenge to improve the poor electronic conductivity of Li3V2(PO4)3.
However, the poor electronic conductivity and large volume expansion during the discharge/charge process lead to poor electrochemical performance.
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