Preparation method of silicon/carbon multi-component composite negative electrode material
A negative electrode material and multi-component composite technology, which is applied in the field of preparation of a silicon/carbon multi-component composite negative electrode material for lithium-ion batteries, can solve the problems of low material density, easy to agglomerate, and difficult to disperse, and achieve the effect of firm combination
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Embodiment 1
[0036] (1) Surface modification treatment of carbon nanotubes: first put carbon nanotubes into a mixed acid of concentrated sulfuric acid and concentrated nitric acid (volume ratio 7:1) to heat and reflux, filter and dry to obtain carboxylated carbon nanotubes .
[0037] (2) Surface modification of nano-silicon: first, heat nano-silicon (1g) in the air (400°C) to properly oxidize the surface to form a layer of silicon oxide, and then use 3-aminopropyltriethyl 1ml of oxysilane was used to aminate the above-mentioned slightly oxidized nano-silicon under the condition of heating to reflux in toluene (15ml).
[0038] (3) Preparation of primary silicon-carbon nanotube / amorphous carbon composite negative electrode material: the carboxylated carbon nanotubes obtained in step (1) and the aminated nano-silicon (carboxylated carbon nanotubes accounted for Spray drying-55% of the weight of the pyrolysis material, silicon amide accounts for 35% of the weight of the spray drying-pyrolysis...
Embodiment 2
[0043] (1) Surface modification of carbon nanotubes: first put carbon nanotubes into a mixed acid of concentrated sulfuric acid and concentrated nitric acid (volume ratio 3:1) to heat and reflux, filter and dry to obtain carboxylated carbon nanotubes .
[0044] (2) Surface modification treatment of nano-silicon: firstly, nano-silicon (1g) is properly heated (500°C) in air to oxidize its surface properly to form a layer of silicon oxide. The slightly oxidized nano silicon was then aminated with ethyl silicate (1ml) under the condition of heating to reflux with toluene (15ml).
[0045] (3) Preparation of primary silicon-carbon nanotube / amorphous carbon composite negative electrode material: the carboxylated carbon nanotubes obtained in step (1) and the aminated nano-silicon (carboxylated carbon nanotubes accounted for 35% of the weight of the material after sintering, and silicon amide accounts for 45% of the weight of the material after sintering) into the tetrahydrofuran solu...
Embodiment 3
[0050] (1) Surface modification of carbon nanotubes: first put carbon nanotubes into a mixed acid of concentrated sulfuric acid and concentrated nitric acid (volume ratio 1:1) to heat and reflux, filter and dry to obtain carboxylated carbon nanotubes .
[0051] The carbon nanotubes (10mg) obtained above were reacted with ethylenediamine (15ml) at 120°C for 24h under reflux with condensing agent dicyclohexylcarbodiimide (0.1g) to form the amide bonds and form amino groups on carbon nanotubes to obtain aminated carbon nanotubes.
[0052] (2) Surface modification treatment of nano-silicon: firstly, nano-silicon is properly heated to 600°C in the air to oxidize its surface properly to form a layer of silicon oxide.
[0053] (3) Preparation of a silicon-carbon nanotube / amorphous carbon composite negative electrode material: the aminated carbon nanotubes obtained in step (1) and the slightly oxidized nano-silicon (aminated carbon nanotubes) obtained in step (2) Accounting for 50% ...
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