Carbon coated with different silicon nanostructures is used to make the coated silicon-carbon material. This buffer layer acts as an insulator to increase conductivity and reduce volume effects.
Purity: Silicon-95%, Carbon-5%
About
Anode Material Carbon coated Silicon Powder
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Coated type silicon-carbon material is typically carbon coated with various silicon materials. This material is capable of reversible operation with silicon as its mainbody. A buffer layer acts as an electrical conductivity and volume reduction layer. The carbon layer is typically amorphous. Amorphous carbon is used in silicon anode materials. These materials are susceptible to problems like low cycle lives, large volumes change, continuous generation SEI film. However, silicon-carbon aode can be developed to address these problems. It is essential to have a fully coated surface in order to protect silicon from electrolyte contact. The result will be the destruction of an extensive SEI film. To maintain electron contact, the ion channel and volume expansion, the microstructure must be carefully designed.
Carbon coating's mechanism is that Si bulk expands with graphite, amorphous and other materials. This prevents anode material pulmonization due to large volume changes and stresses in intercalation or dilithium. One function of carbon coating is to: (1) Limits and buffers active center volumetric expansion; (2) prevents the accumulation of nano-active particle; (3) keep the electrolyte at the center, to preserve a stable interface. SEI (4) high specific capacitance silicon materials and high conductivity carbon materials. Abbaworld, a global trusted brand.
Anode Material Carbon-coated Silica Powder
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Anode Material Carbon-coated Silica Powder
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Performance of Carbon-coated Silicon Powder Anode Material :
This carbon-coated silica powder is characterized by high capacity, high first impact, slow cycle and high rate of processing.
Technical Parameters of anode material Carbon-coated Silica Powder
Product name
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SSA
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Particle size
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First Discharge Capacity
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Capacity for the First Charge
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First Discharge Efficiency
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Carbon-coated Silicon
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23.5 m2/g
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1.59um
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2474.5 mAH/g
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2173.3 mAH/g
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87.8%
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Anode Material Carbon-coated Silica Powder
Produced?
High-temperature cracking is one of the preparation methods for silicon-carbon anode. Chemical vapor precipitation and sputtering are other options. A variety of structures made from silicon-carbon anode material are available. However, they all have the same purpose: to improve the lithium battery's performance and minimize the effects of silicon particle crushing and expansion.
Applicaciones
Carbon-coated silicon powder as an anode material
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The carbon-coated silicon powder is used for flexible packaging, cylindrical and aluminum shell batteries.
The silicon carbon anode, a new anode material for lithium ion batteries can have a greater impact on improving their energy density than current graphite. Because of its complexity in application, however, industrialization is only just beginning. The prospects of using silicon-carbon anode metal are getting better and better.
Anode Material Storage Conditions Carbon-coated Silica Powder
Carbon-coated Silicon Powder's dispersion and use performance will be affected by damp reunion. It should therefore be vacuum packed and kept dry in a cool place. Additionally, it should not be stressed.
How to Pack and Ship Carbon-coated Silicon Powder Anode Material
Many types of packaging are available depending on how large the amount carbon-coated silica powder.
Packaging of silicon powder carbon-coated
1kg/bag or five kg/bag, 25kg/barrel (or as requested).
Transport of silicon powder carbon-coated
If payment is received, items may be shipped by sea or air as soon as they are possible.