Perovskite oxide MgTaO3 magnesium ion battery anode material synthesized by template and preparation method of perovskite oxide MgTaO3 magnesium ion battery anode material
A perovskite oxide, magnesium ion battery technology, applied in battery electrodes, chemical instruments and methods, tantalum compounds, etc., can solve problems such as shortening the diffusion time of magnesium ions, material lattice transformation, and electrode material particle breakage, etc. The effect of reducing the resistance of electron migration, improving the movement ability, and reducing the resistance of grain boundaries
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Embodiment 1
[0022] Embodiment 1: Magnesium nitrate hexahydrate, tantalum hydroxide are mixed in the ratio of 1: 1 by the amount of substance, the amount of adding substance is the citric acid of 5 times of the amount of total metal ion substance and add water and stir to form total metal ion concentration of 1.0mol·L-1 initial aqueous solution; mix 6g of acrylamide / 100mL of water with acrylamide and 1g of N,N'-methylenebisacrylamide / 100mL of water with water Dissolved, the amount of acrylamide in the solution is 0.5 times the amount of total metal ion substances in the initial aqueous solution; use a polytetrafluoroethylene stirring paddle to stir at a speed of 1500rpm for 5 minutes and then raise it to 5°C / min. 75°C and maintain this temperature until a jelly-like gel forms. Dry the formed gel in a low-temperature and high-vacuum environment. The drying process adopts the finished freeze dryer on the market. Put the gel into the sample tray of the freeze dryer and start the refrigerator. ...
Embodiment 2
[0023] Embodiment 2: Magnesium nitrate hexahydrate and tantalum hydroxide are mixed according to the ratio of 1: 1 of the amount of substance, and the amount of substance added is citric acid 7 times of the amount of total metal ion substance and added with water and stirred evenly to form a total metal ion concentration of 2.0mol·L-1 initial aqueous solution; mix 6g of acrylamide / 100mL of water with acrylamide and 1g of N,N'-methylenebisacrylamide / 100mL of water with water Dissolved, the amount of acrylamide in the solution is 0.8 times the amount of total metal ion substances in the initial aqueous solution; use a polytetrafluoroethylene stirring paddle to stir at a speed of 1800rpm for 10 minutes and then raise it to 7°C / min. 80°C and maintain this temperature until it becomes a jelly-like gel. Dry the formed gel in a low-temperature and high-vacuum environment. The drying process adopts the finished freeze dryer on the market. Put the gel into the sample tray of the freeze...
Embodiment 3
[0024] Embodiment 3: Magnesium nitrate hexahydrate and tantalum hydroxide are mixed according to the ratio of 1: 1 of the amount of substance, and the amount of substance added is citric acid 10 times of the amount of total metal ion substance and added with water and stirred evenly to form a total metal ion concentration of 2.5mol·L-1 initial aqueous solution; mix 6g of acrylamide / 100mL of water with acrylamide and 1g of N,N'-methylenebisacrylamide / 100mL of water with water Dissolved, the amount of acrylamide in the solution is 1.2 times the amount of total metal ion substances in the initial aqueous solution; use a polytetrafluoroethylene stirring paddle to stir at a speed of 2000rpm for 15 minutes and then raise it to 10°C / min. 85°C and maintain this temperature until a jelly-like gel forms. Dry the formed gel in a low-temperature and high-vacuum environment. The drying process adopts the finished freeze dryer on the market. Put the gel into the sample tray of the freeze dr...
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