A kind of preparation method of anode material of sodium ion battery
A sodium-ion battery and positive electrode material technology, which is applied in the direction of battery electrodes, electrolyte storage battery manufacturing, secondary batteries, etc., can solve the problems of low charge and discharge capacity, harsh synthesis conditions, etc., achieve good stability, reversible charge and discharge capacity improvement, The effect of performance improvement
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Embodiment 1
[0029] A preparation method of an air-stable sodium-ion battery negative material, comprising the steps of:
[0030] (1) Material preparation: On the basis of the molar ratio Na:Mn:Ti=1:1:1, the excessive 10% of sodium carbonate was used to compensate for the volatilization loss, and 5.83g of sodium carbonate (Na 2 CO 3 ), 7.983g of manganese trioxide (Mn 2 o 3 ), 7.893g of titanium dioxide (TiO 2 );
[0031] (2) Mix the samples weighed in (1) into a ball mill jar, add 20mL of absolute ethanol;
[0032] (3) Put (2) into a planetary ball mill for ball milling for 15 hours, where the speed is 200r / min;
[0033] (4) Collect the sieved and ball-milled product, dry at 80°C for 12 hours, and naturally cool down to 30°C;
[0034] (5) Grind the dried powder in (4), take 0.5g and press it with a pressure of 10Mpa, the diameter of the tablet is about 12.75mm, and the thickness is about 3mm;
[0035] (6) Sintering: Ar atmosphere, at 3°min -1 heating rate, sintering at 650°C for 4...
example 1
[0045] The material prepared as described in Example 1 is tested with XRD (Minflex600), with 1 ° min -1 The scanning speed is scanned in the interval 2-Theta of 5-55°, and the obtained XRD diffraction pattern is as follows figure 1 As shown, the ordinate is an arbitrary unit, and the abscissa is 2-Theta (°). It can be seen from XRD that the sample we prepared is pure phase Na 4 mn 4 Ti 5 o 18 ; The obtained battery is left to stand in the ambient air for 2 to 10 hours, and the LAND battery test system is used in ambient air at room temperature (25±2°C), and the battery is in the voltage range of 2.0-4.0V, 20mAg -1 The charge and discharge test was carried out at a current density of figure 2 Charge and discharge cycle curve, charge and discharge 60 cycles. figure 2 It is the cycle graph of the battery assembled in Example 1. The abscissa represents the specific capacity, the unit is mAhg -1 , the ordinate represents the voltage, and the unit is V. The curves correspon...
Embodiment 2
[0047] Step (1-13) is identical with embodiment 1;
[0048] (14) Battery test: use blue battery for charge and discharge test, voltage range 2.0-4.0V, current density 200mAg -1 .The obtained charge-discharge cycle curve is as follows Figure 4 .
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