Tag: silicon

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

About Nano Silicon Anode Material Si Powder:
Silicon is the most promising electrode material for the next generation of lithium-ion batteries, with a specific capacity (3600 mAh/g) about 10 times higher than graphite (372 mAh/g). However, its use is severely limited due to the significant expansion of the material in the loaded (lithified) state (over 300%) and the instability of the solid electrolyte interface layer (SEI). The poor mechanical stability and chemical passivation properties of the silicon electrode make the cyclability of the silicon electrode far from meeting the requirements of the battery system and have inspired a large number of studies and proposals to circumvent these limitations.

During lithium insertion, the volume of silicon changes so much (~400%) that the silicon breaks and falls off the collector, resulting in a prototype lithium-silicon battery losing most of its capacity in less than 10 charge-discharge cycles. The key to the success of high-capacity lithium-ion batteries is to solve the problem of the capacity and stability of lithium-ion silicon.

Silicon anode materials show great potential for improving the efficiency and energy storage capacity of lithium-ion batteries. Until recently, their main drawback was surface oxidation passivation, a process that increases impedance and reduces the circularity of the anode. Our high purity silicon anode materials achieve high specific capacity without significantly affecting cycle life. Tungstenmolybdenummetals is a trusted global Nano Silicon Anode Material Si Powder supplier. Feel free to send an inquiry about the latest price of Silicon Anode Material at any time.


If you want to know silicon powder price, please send inquiry to sales1@rboschco.com


Performance of Nano Silicon Anode Material Si Powder :

Nano silicon anode material (CAS 7440-21-3) has the characteristics of high capacity, high first effect, long cycle, low expansion, excellent processing performance and rate performance, and it matches well with the existing graphite anode system.


Technical Parameter of Nano Silicon Anode Material Si Powder :

Product NameMFSSAParticle SizeFirst Discharge CapacityFirst Charge CapacityFirst Discharge Efficiency
Nano Silicon PowderSi11.36m2/g900nm2348.9 mAH/g2003.6 mAH/g85.3%

 

How is Nano Silicon Anode Material Si Powder Produced? 
A method for forming a silicon powder anode material for a rechargeable battery includes a metal matrix providing not more than 30% silicon, including a silicon structure dispersed therein. The metallic matrix is etched at least partially to at least partially isolate the silicon structure.

Particles containing a metallic silicon alloy comprising a metallic matrix and a silicon metal powder structure dispersed in the metallic matrix comprising not more than 30wt % of silicon, and

By removing the metal from the metal-silicon alloy, the metal matrix of the metal-silicon alloy is etched at least partially to form a porous silicon particle comprising a plurality of interconnected structural elements.
 
Applications of Nano Silicon Anode Material Si Powder:
Silicon powder is one of the most promising of the next generation of lithium-ion battery anode materials. Nano-silicon anode materials are used in cylindrical, flexible and aluminum-shell batteries. Our silicon anode powder can be dispersed in the battery solvent while preventing caking. They are designed to paste seamlessly with other battery materials and produce a uniform, stable coating. As such, they are suitable for a range of applications, including lithium-ion batteries, photovoltaics, semiconductors and electronics.

Storage Condition of Nano Silicon Anode Material Si Powder :

The damp reunion will affect nano Si powder dispersion performance and using effects, therefore, nano Si should be sealed in vacuum packing and stored in a cool and dry room, the nano Si powder can not be exposure to air. In addition, the Si powder should be avoided under stress.


Packing & Shipping of Nano Silicon Anode Material Si Powder :
We have many different kinds of packing which depend on the nano silicon anode Si powder quantity.
Nano silicon anode Si powder packing: 1kg/bag or 5kg/bag, 25kg/barrel, or as your request.
Nano silicon anode Si powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.

Nano Silicon Anode Material Si Powder CAS 7440-21-3插图



 

Silicon Si powder Properties

Other NamesSilicon Si powder, Si, Si powder, nano silicon powder
CAS No.7440-21-3
Compound FormulaSi
Molecular Weight28.08 g/mol
Appearancebrown, or silvery
Melting Point1414°C 
Boiling Point2900°C 
Density2330kg/cm3
Purity>99.95%
Electrical Resistivity3-4 microhm-cm @ 0 °C
Poisson’s Ratio0.064 – 0.28
Specific Heat0.168 Cal/g/K @ 25 °C
Thermal Conductivity1.49 W/cm/K @ 298.2 K
Thermal Expansion (25 °C) 2.6 µm·m-1·K-1
Young’s Modulus51-80 GPa
Exact MassN/A
Monoisotopic MassN/A
  
  

Silicon Si powder Health & Safety Information

Safety WarningWarning
Hazard StatementsH315-H319-H335
Hazard CodesH228
Risk Codes11
Safety Statements16-33-36
RTECS NumberVW0400000
Transport InformationUN 1346 4.1/PG 3
WGK Germany2
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About Nano Silicon Anode Material Si Powder:Silicon is the most promising electrode material for the next generation of lithium-ion batteries, with a specific capacity (3600 mAh/g) […]

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Silicon Carbide, Why Let a Person Love and Hate

What’s Silicon Carbide? Silicon carbide (also known as emery) is made up of quartz, petroleum coke or coal coke and wood chips. There are rare minerals found in Silicon Carbide. The most common and most economically-friendly silicon carbide can be found in contemporary C,N,B and other nonoxide high tech refractory material raw materials. This type is also known as gold, steel sand and refractory. China’s industrial production of Silicon Carbide is currently divided into green and black silicon caride. These are both hexagonal crystals having a specific gravity 3.203.25 and a microhardness 2.8403.320 kg/mm2.

Silicon Carbide

: History and Development American Acheson fused Diamond experiment discovered silicon carbide. He mistakenly thought he had found a diamond combination in his laboratory. Acheson then studied 1893 industrial melting silicon carbide methods. We often refer to Acheson furnace as being in use today. First detected in meteorites was silicon carbide in 1905. The first silicon carbide crystalled was made in 1907. Boston was the site of the inaugural World Silicon Carbide Conference, which took place in 1958 for scientific exchange. The research findings of CREE led to the establishment of a production line for silicon carbide. Suppliers began selling silicon carbide in 1987. Application of silicon carbide

Silicon carbide can be used as an abrasive. It can also be used as a metallurgical deoxidizer, high-temperature resistant material, or as a single crystal.

Tungstenmolybdenummetals (aka. Tungstenmolybdenummetals is an advanced material. With over 12 years’ experience, Tungstenmolybdenummetals is an established global supplier of chemical material. High purity, small particles size, and low impurities are all hallmarks of the Silicon caride that our company produces. We can help you if the price is lower.
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What’s Silicon Carbide? Silicon carbide (also known as emery) is made up of quartz, petroleum coke or coal coke and wood chips. There are rare […]

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Structural ceramic material, Silicon Nitride

How does Silicon Nitride play a role in this? Silicon nitride High-temperature refractory compounds with no melting points, strong resistance to high temperature creeps, and no binder reactions sintering silicone nitride loads softening point greater than 1800. This material can be used in advanced refractory applications. The high temperature stability of silicon nitride ceramic materials is accompanied by strong resistance to oxidation and high precision in product sizes. Covalent compounds such as silicon nitride have a strong bond strength. They can also form oxide protective films in the atmosphere. Above 1200 it is not oxidized. However, below 1200 the protective film may be formed. This protects against aluminum, lead and other metals and alloys. However, the material can be damaged by other metals, such as nickel-chromium alloy, stainless steel or magnesium. The ceramics of silicon nitride can be used for high-temperature engineering parts, the metalurgical industry and in other aspects. They also have the ability to resist corrosion and seal parts within the chemical industry. You can use silicon nitride, silicon carbide or thorium dioxide as binding materials. They are also capable of forming strong combinations. Silicon nitride may also be used to make solar cells. It can be used to reduce reflections of incident light by coating it with silicon nitride using the PECVD technique. The reaction product hydrogen molecules enter silicon nitride and the silicon wafer and play the role as passivation defect. It is possible for the number of silicon nitrogen tones to fluctuate between 4 and 3. This can be due to different processing conditions. The physical properties of different films will also vary depending on their atomic ratios. Useful for electric furnaces and aircraft engines as well as ultra-high temperatures gas turbines.
What material properties does silicon nitride have?
Silicon nitride can be very strong especially when hot-pressed, making it one of nature’s most hard substances. This material is very resistant to heat and can remain strong at temperatures up to 1200 for a long time without losing its strength. The melt will not be affected by heat until 1900. It can also resist almost any inorganic acid and less than 30 percent caustic soda solution. Silicon nitride has very little interaction with water. Slow hydrolysis with concentrated strong acid solution can produce silica and ammonium salt. Easy soluble in hydrofluoric acids, but not with dilute acid. A concentrated strong alkali solution may slowly corrode silicon, while the molten alkali solution will quickly transform silicon nitride from silicate to ammonia. The above 600 levels of silicon nitride may reduce lead oxide, zinc oxide and transition metal oxide. Silicon nitride, which is a mix of silica with carbon in nitrogen-containing small amounts of hydrogen, can be used as a catalyst, high-temperature resist materials, coating, abrasive or carrier. The characteristics of Silicon Nitride ceramics are high strength and high temperature resistance. The ceramic material is first to be considered for use in ceramics as heat engines components due to its excellent mechanical characteristics.



Silicon Nitride is available at a steep price
There are many factors that affect the price of Silicon Nitride purity. Silicon Nitride market prices are constantly evolving. We are available to assist you at all times.

Silicon Nitride supplier
Advanc3dmaterials (aka. With 12 years experience, Advanc3dmaterials (aka. Our company currently has a number of powder materials. You can also order OEM. You can find Silicon Nitride in the following links. Get in touch To send us an enquiry, click the appropriate products.

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How does Silicon Nitride play a role in this? Silicon nitride High-temperature refractory compounds with no melting points, strong resistance to high temperature creeps, and […]

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