2018
DOI: 10.1016/j.electacta.2018.08.149
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Improvement of high-rate charging/discharging performance of a lithium ion battery composed of laminated LiFePO4 cathodes/ graphite anodes having porous electrode structures fabricated with a pico-second pulsed laser

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Cited by 36 publications
(31 citation statements)
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“…17) is much smaller (20). This larger discharging capacity retention of the holed cathodes can be considered to reflect the fact that a facilitated transfer of Li + ions in the discharging process can occur through both the surface and the sidewalls (produced by forming the holes) of the LFP layer (or LFP/current collector layers), as found recently for the LFP/LFP cathode with the same LFP thickness on both side of a current collector [25][26][27] and the LFP/activated carbon (AC) cathode (in which the thicknesses of LFP and AC layers are different). 28 Table 1.…”
Section: Cathodementioning
confidence: 54%
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“…17) is much smaller (20). This larger discharging capacity retention of the holed cathodes can be considered to reflect the fact that a facilitated transfer of Li + ions in the discharging process can occur through both the surface and the sidewalls (produced by forming the holes) of the LFP layer (or LFP/current collector layers), as found recently for the LFP/LFP cathode with the same LFP thickness on both side of a current collector [25][26][27] and the LFP/activated carbon (AC) cathode (in which the thicknesses of LFP and AC layers are different). 28 Table 1.…”
Section: Cathodementioning
confidence: 54%
“…1) in which LFP layers were coated on both sides of an Al current collector foil were prepared using the same electrode materials and conditions as those reported in our previous papers. [25][26][27] The preparation is described in detail in the electric supporting information (SI). In order to prepare the LFP/LFP cathodes with different LFP loading amounts on both sides of the Al foil, the gap of a doctor-blade coater was suitably adjusted to prepare the LFP layers with different loading amounts, typically ca.…”
Section: Methodsmentioning
confidence: 99%
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“…16 Meanwhile, the Y-NCM (Figure 3H) clearly shows a homogeneous coating layer of approximately 3 nm on the particle surface. 20 As shown in the inset of Figure 3H, the lattice fringe of YPO 4 represents a uniform spacing of 0.35 nm, indicating the tetragonal phase of the (200) plane. 17 For application to actual products, we prepare the electrodes with a high density of 14.6 mg/cm 2 .…”
Section: Resultsmentioning
confidence: 91%