Amorphous magnesium-Nickel series hydron-storage electrode material and producing method thereof
An electrode material, amorphous technology, applied in the direction of battery electrodes, circuits, electrical components, etc., can solve the problems of capacity attenuation, hindering the hydrogen absorption/desorption process, etc., and achieve the effect of improving production efficiency and good electrochemical cycle stability
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Embodiment 1
[0017] According to the 1:1 stoichiometric ratio of the MgNi alloy, 1.28 grams of analytical pure Mg powder (purity 99.5%), 3.07 grams of analytical pure Ni powder (purity 99.5%), 0.08 grams of amorphous B powder, and 0.13 grams of fluorinated graphite (CFn) powder gram into a stainless steel ball mill jar with a ball-to-material ratio of 30:1, and filled with protective gas Ar after vacuuming. The ball milling process is carried out in a QM-1SP planetary ball mill, the speed of the ball mill is 450 rpm, and the material is discharged after continuous ball milling for 40 hours. The microstructure of the alloy is analyzed using a Philips-PW1700 X-ray diffractometer. The alloy powder is all amorphous . The preparation method of the test electrode is to mix 0.07 g of ball-milled alloy powder with 0.35 g of conductive agent carbonyl Ni powder (-200 mesh), and press it into a φ10 mm disc under a pressure of 40 tons / cm2 as the negative electrode. Cathode Ni(OH) 2 / NiOOH, the elect...
Embodiment 2
[0019] According to the 1:1 stoichiometric ratio of the MgNi alloy, 1.28 grams of analytical pure Mg powder (purity 99.5%), 3.07 grams of analytical pure Ni powder (purity 99.5%), 0.05 grams of amorphous B powder, 0.03 grams of Si powder, and fluorinated graphite 0.13 g of (CFn) powder was put into a stainless steel ball mill tank with a ball-to-material ratio of 30:1, and the protective gas Ar was filled after vacuuming. The ball milling process is carried out in a QM-1SP planetary ball mill with a speed of 450 rpm and continuous ball milling for 55 hours. The microstructure of the alloy is analyzed using a Philips-PW1700 X-ray diffractometer. The alloy powder is all amorphous . The preparation method of the test electrode and the battery assembly and testing methods are the same as in Example 1. The measured initial capacity is 480mAh / g, after 20 charge-discharge cycles, the capacity remains above 80%.
Embodiment 3
[0021] According to the 1:1 stoichiometric ratio of the MgNi alloy, 1.28 grams of analytical pure Mg powder (purity 99.5%), 3.07 grams of analytical pure Ni powder (purity 99.5%), 0.08 grams of amorphous B powder, 0.03 grams of Al powder, and fluorinated graphite 0.13 g of (CFn) powder was put into a stainless steel ball mill tank with a ball-to-material ratio of 30:1, and the protective gas Ar was filled after vacuuming. The ball milling process is carried out in a QM-1SP planetary ball mill, the ball mill speed is 450 rpm, and the material is discharged after continuous ball milling for 50 hours. The structure of the alloy is analyzed using a Philips-PW1700 X-ray diffractometer. The alloy powder is all amorphous . The preparation method of the test electrode and the battery assembly and testing methods are the same as in Example 1. The measured initial capacity is 435mAh / g, after 20 charge-discharge cycles, the capacity remains above 90%.
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