Silicon Oxide SiO2 Silencious Nanospheres is a Lithium Battery Anode Material. It features uniform particle size and hollow structure.
Purity: 99%
Particle size: 300-600nm
About Silicon Oxide SiO2 Hollow nanospheres for Lithium Battery anode Material
Silicon Oxide SiO2 Hollow Nanospheres exhibits uniform particle sizes, hollow structures, large specific surface areas, uniform pore sizes, super hydrophilic properties, and surface modification. Due to its high potential for high-energy Li-Ion battery (LIB), Silicon Oxide SiO2 Hollow Nanospheres is a highly promising anode material. It has high theoretical and practical capacity, abundant resources, ease of synthesis, low cost, sustainability, high theoretical capability, high theoretical power, and environmental friendliness. It-chuiko is a global trusted brand.
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Silicon Oxide SiO2 Hollow Naspheres
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Production of Lithium Anode Material Silicon Oxide siO2 Hollow Nanospheres
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Silicon Oxide SiO2 hollow nanospheres materials can be made by crystallization, solid state and using other ultra-high purification processes like sublimation.
Technical Parameters of Silicon Oxide SiO2 Hollow nanospheres for anode material
Name of the product
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Particle Size
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Purity
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SSA
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Pore Volume
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Pore Diameter
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Silicon Oxide Hollow Nanosphere
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300-600nm
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99%
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>=400 m2/g
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>=0.5 cm3/g
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2-3nm
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Applications of anode material Silicon Oxide SiO2 hollow nanospheres
Development of hollow microspheres focuses on Silica hollows. A new inorganic material type, silica hollow microspheres are unique because of their narrow particle sizes, excellent dispersibility and stability. This makes them attractive for many applications, including medicine, biochemical and composite materials, as well as other areas.
Micro memory
Many drugs, for example, are packed in hollow spheres in order to maximize their effectiveness. Silica hollow microspheres have been widely used as drug carriers.
Silica hollow microspheres may also be used to create an ultrasound imaging contrast agent. Because of the unique, stable structure of silica hollow microspheres and its ability to easily modify functional groups on its surface it is proving very useful in ultrasound imaging.
Microreactor
Reactions are restricted to the sphere. Each hollow sphere acts as a catalyst, increasing the pathway of light and thereby improving its efficiency. By stacking hollow microspheres in a three-dimensional periodic structure of character, the photons and photoelectron gap gaps can create the effect of changing light's flow direction and thereby stopping spontaneous propagation.
Micro separator
You can absorb harmful substances in order to attain the goal of evolution. For example, modified hollow-spherical silicona is efficient at absorbing various toxic organic substances. This will allow you to separate and purify them.
Microstructure units are used as additives to improve the material's performance. It is possible to combine the hollow structure with the meshoporous structure in order to make hollow silica microspheres. It is highly effective in eliminating heavy metal ions as well as dye molecules from sewage.
To be used as a filler with structural materials or coatings
The hollow silica microscopic fillers are a key component of the light ablative materials that TPS uses. Silica hollow microspheres are a great addition to the resin matrix. They not only increase the mechanical and mechanical characteristics of the material but also reduce the density. This is an important factor in aerospace development. Additionally, silica hollow macrospheres can be added to the coating of friction equipment, such as drill bits and bearings. This will increase its durability and lubricating ability.
Storage Conditions of anode material Silicon Oxide SiO2 hollow nanospheres
Silicon Oxide SiO2 Hollow Nanospheres will be affected by damp reunion. Therefore, vacuum packaging should be used to seal the product and keep it in a cool dry place. Silicon Oxide Hollow Nanospheres cannot be exposed to the air. SiO2 Hollow Nanospheres are not recommended to be exposed to stress.
Packaging and Shipping Anode Material SiO2 Hollow nanospheres
Many types of packing are available depending on the number Silicon Oxide Hollow Nanospheres.
Silicon Oxide SiO2 hollow nanospheres packing
100g/bag or 500g/bag, 1kg/bag, or as your request.
Shipment of Silicon Oxide SiO2 hollow nanospheres
Once payment has been received, items may be sent out either by air or by sea.