Expansion graphite/metal oxide composite material manufacture method
A technology of expanded graphite and composite materials, applied in the direction of oxide conductors, conductive materials, conductive materials, etc., can solve the problems of excessive material resistance, etc., and achieve the effects of simple preparation process, low internal resistance, and strong industrial application value
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Embodiment 1
[0025] With 0.5g expanded graphite (expansion volume 200mL / g) and 9.5g nano-nickel oxide (average particle diameter 5nm), in planetary high-energy ball mill, adopt steel grinding ball and spherical tank with rotation number 100rpm, ball-to-powder ratio 10:1 , Ball milling for 40 hours. Take it out and dry it at 100°C to make a polarized electrode for electrochemical performance test. The results are listed in Table 1.
Embodiment 2
[0027] With 5g expanded graphite (expansion volume 600mL / g) and 5g nano-manganese oxide (average particle diameter 1000nm), adopt steel grinding ball and ball tank with rotation number 250rpm, ball-to-powder ratio 30: 1, ball mill in planetary high-energy ball mill 5 hours. Take it out and dry it at 100°C to make a polarized electrode for electrochemical performance test. The results are listed in Table 1.
Embodiment 3
[0029] With 3g expanded graphite (expansion volume 400mL / g) and 7g nano-manganese oxide (average particle diameter 50nm), in the planetary high-energy ball mill, adopt steel ball and spherical pot with revolution 250rpm, ball-to-powder ratio 10: 1, ball mill 10 hours. Take it out and dry it at 100°C to make a polarized electrode for electrochemical performance test. The results are listed in Table 1.
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Abstract
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