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Interlayer gap widened α-phase molybdenum trioxide as high-rate anodes for dual-ion-intercalation energy storage devices

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Academic year: 2021

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Fig. 1 Structure and composition analysis of α-MoO 3 and e-MoO 3 . a Schematic representation of expansion process from pristine α-MoO 3 (left), reaction
Fig. 2 Li + storage behavior of α-MoO 3 and e-MoO 3 electrodes. Initial three galvanostatic charge/discharge pro files of a α-MoO 3 and b e-MoO 3
Figure 4 b shows the first four galvanostatic charge/discharge cycles using a Li metal reference electrode to record the anode and cathode potentials during the cell cycling
Fig. 4 e-MoO 3 //graphite DIES device. a Design of the dual-ion-intercalation MoO 3 //graphite cell

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