High Quality Nano Silicon Anode Material Si Powder CAS 7440-21-3

Because of their high theoretical specific capacity and plentiful reserves, Silicon Anode Material is the best choice for manufacturers of lithium batteries to upgrade anodes. Particle Size: 900nm

About Nano Silicon Anode Material Si Powder :
With a capacity of 3600mAh/g, silicon is the best electrode material for future generation lithium-ion batteries. This specific capacity is 10x greater than that of graphite (372mAh/g). The significant expansion (over 300%) of the material when loaded (lithified), and the instability of the solid electrolyte interlayer (SEI) make its use very limited. Poor mechanical stability and chemical passivation characteristics of the silicon electrode make it difficult for the system to rely on the electrode's cyclability. Many studies have been conducted and proposed solutions.
The silicon volume changes dramatically during lithium insertion. It can cause the lithium-silicon-battery prototype to loose most of its power in less than 10 charges-discharge cycles. Solving the issue of stability and capacitance of lithium-ion lithium is key to high-capacity, lithium-ion lithium-ion lithium-ion cells' success.
Anode materials made from silicon have great potential to increase the storage efficiency and energy capacity of lithium-ion cells. The main disadvantage of silicon anode materials was their resistance to surface oxidation, which can increase impedance or reduce the circularity. The high-purity silicon anode materials we use have a high specific capability without significantly shortening their cycle life. Wgraj is trusted globally Nano Silicon Anode Material Si Powder Source . You can send us an inquiry regarding the latest. Prices starting at Silicon Anode Material Anytime.

Nano Silicon Anode Materials Si Powder Performance:
This nanosilicon anode material is CAS 7440-21-3 and has excellent rate and processing performance.

Technical Parameters of Nano Silicon Anode Materials Si Powder
Name of Product MF SSA Size of the particle First Discharge Capacity First Charge Capacity First Discharge Efficiency
Nano Silicon Powder Si 11.36m2/g 900nm 2348.9 mAH/g 2003.6 mAH/g 85.3%
It is simple. Nano Silicon Anode Material Si Powder Produced?
The method of forming a silicon-anode material in a rechargeable lithium battery uses a metal matrix that contains no more than 30% silicon. This includes the silicon structure. At least partly, the metal matrix is etched to isolate the silicon structure.
Metal silicon alloy particles that contain a metal matrix with a silica structure and dispersed within the metallic matrix which contains not more then 30wt% silicon.
To remove the metallic elements from the steel-silicon-alloy, the matrix is partially etched to create a porous silicon particle that includes a number of interconnected structural elements.

Applicaciones Nano Silicon Anode Material Si Powder :
One of the promising new generation of lithium-ion anode materials is Silicon. For aluminum shell batteries, nanosilicon is used as anode materials in flexible, cylindrical and flexible forms. Our silicon anode can be mixed in the liquid battery to avoid caking. The powder can blend seamlessly with other batteries and create a consistent, solid coating. These are ideal for many applications such as photovoltaics or lithium-ion cells.

Storage conditions for Nano Silicon Anode Materials Si Powder

A damp reunion can affect the performance of nano Si powder and its use. Nano Si must be kept in vacuum packed and in a dry area. Si powder should not be exposed to stress.


How to Pack and Ship Nano Silicon Anode Materials Si Powder
Many types of packing exist, which are dependent on the amount of nanosilicone Si powder.
Nano silicon anode Si powder packing: 1kg/bag, 5kg/bag and 25kg/barrel. Or as requested.
Nano silicon anode Si powder shipping: Express shipping is possible by express, air or sea.




Silicon Si powder Properties

Other Titles Silicon Si powder, Si, Si powder, nano silicon powder
7440-21-3
Compound Formula Si
Molecular Weight 28.08 g/mol
Appearance You can choose to be brown or you could go silvery.
Melting Point 1414degC
Boiling Point 2900degC
Density 2330kg/cm3
Purity >99.95%
Electrical Resistivity 3-4 microhm-cm @ 0 degC
Poisson's Rate 0.064 - 0.28
Specific Heat 0.168 Cal/g/K @ 25 degC
Thermo Conductivity 1.49 W/cm/K at 298.2K
Thermal Expansion (25 degC) 2.6 um*m-1*K-1
Young's Module 51-80 GPa
Exact N/A
Monoisotopic N/A

Silicon Si powder Health & Safety Information

Safety Notice Alert
Hazard Statements H315-H319-H335
Hazard Codes H228
Risk Codes 11
Safety statements 16-33-36
RTECS # VW0400000
Transport Information UN 1346 4.1/PG3
WGK Germany 2

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