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- W4382022360 abstract "The microstructures and electrochemical properties of the La-Mg-Ni-based hydrogen storage alloy electrodes prepared under different molding pressure (P) have been studied systematically by Physical Property Measurement System (PPMS), Metallurgical Microscope and electrochemical measurements. Specific resistance of the composite alloy electrodes monotonously decreases from 2.06×10-6 Ω·m (P = 200 MPa) to 0.40x10-6 Ω·m (P = 1000 MPa). Maximum discharge capacity of alloy electrode first increases from 371 mAh/g (P = 200 MPa) to 398 mAh/g (P = 300 MPa), and then decrease to 384 mAh/g (P = 1000 MPa). The HRD of the alloy electrodes first increases and then decreases with increasing molding pressure, and the best high’rate dischargeability can be obtained when P is 400 MPa. The I0 value decreases from 524.00 mA/g (P = 300 MPa) to 356.85 mA/g (P = 1000 MPa). The IL values first increase from 1124 mA/g (P = 300 MPa) to 1192 mA/g (P = 400MPa) and then decrease to 777 mA/g (P = 1000 MPa). The optimum P value in our experiment is 400 MPa." @default.
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- W4382022360 date "2013-01-01" @default.
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- W4382022360 title "The Effect of Molding Pressure on Electrochemical Properties of the La-Mg-Ni-Based Composite Hydrogen Storage Alloy Electrodes" @default.
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- W4382022360 doi "https://doi.org/10.1016/s1452-3981(23)14058-2" @default.
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