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99.99% high purity beta sic nano powders Our 4N nano β-SiC (99.99% purity) is precision-synthesized via CVD, delivering ultra-fine particle size with exceptional sintering activity for high-density ceramic components. It thrives in the most demanding semiconductor environments — from CMP chucks and lithography stages to plasma etch focus rings and chamber liners. Its chemical inertness and minimal metal impurity outgassing maximize chip yield where it matters most. Trusted by leading fabs and equipment makers worldwide. more
Monodisperse spherical Nano SiO₂ aqueous dispersion/colloid This transparent SiO₂ aqueous dispersion is synthesized via patented sol-gel technology, featuring optical excellence visible light transmittance and shelf life >18 months under ambient storage. It is widely used in electronics as low-k dielectric materials, in biomedicine as drug carriers, and in optics for anti-reflection coatings. more
Magnéli Phase Nano Titanium suboxide Ti₄O₇ Powder Magnéli phase Nano titanium suboxide (Ti₄O₇) is an advanced functional material with a unique crystal structure, appearing as a blue-black powder with a precisely controlled particle size of 200–300 nm and a purity of up to 99.9%. As an important member of the titanium oxide family, Ti₄O₇ combines excellent electrical conductivity, chemical stability, and catalytic activity, making it an ideal choice for new energy, environmental protection, and electronics applications. more
Boron Nitride Nanotubes(BNNTs): High Thermal Conductivity Heat Dissipation Fillers BNNTs share the tubular structure of carbon nanotubes but deliver fundamentally different properties: electrical insulation, superior thermal stability (up to 900°C in air), and high thermal conductivity. With a wide bandgap of ~5.5 eV, they offer consistent, predictable performance where CNTs fall short. more
Phase-Smart VO₂ Nanoparticles: Intelligent Thermal Response, Engineered to Order From Thermochromic Color Change material to Intelligent Temperature Control material: The Performance Revolution and Application Blueprint of Vanadium Dioxide and Tungsten-Doped VO2 more
Precision Ceramic 3D Printing Solutions turns impossible structures into reality Precision Ceramic 3D Printing Solutions – Redefining the boundaries of ceramic manufacturing, from dental restorations to aerospace-grade high-temperature components.Precision ceramic 3D printing turns impossible structures into reality. more
New conductive material nickel nanowires NiNWs Hongwu Nickel nanowires have a wide range of potential applications in electronic materials, catalysis, polymers, magnetic storage ultra-high density recording materials, sensors and self-lubricating materials. more
Transparent Colloidal Ag Antibacterial Nano Silver Colloid Ag (Antibacterial Nano Silver Colloid) has been well known antibacterial, antiviral and antifungal properties are enhanced by small particle size and large surface area. more
Nano silica particles used in epoxy resin, superhydrophobic coating nano silica powder Nano silica particles, 20-30nm, 99.8% purity, widely used in exposy resin and superhydrophobic coating. more
Latest news
Some nanomaterials for Thermochromic Application
Thermochromism refers to the phenomenon where a material undergoes color changes under temperature changes. This change is usually caused by changes in the electronic or molecular structure of the material. Its application principle mainly involves t...
Nitrogen doped multi-walled carbon nanotubes with high purity 99%.
product origin:
Jiangsuitem no.:
C958shipping port:
Guangzhoucolor:
black powderlead time:
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T/T,PayPalNitrogen Doped Graphitized Multi-walled Carbon Nanotubes
1. Outer diameter: 10-30nm,30-60nm,60-100nm
2. Length: long tube 5-20um and short tube 1-2um
3. Purity: 99%
Electrode materials nitrogen doped MWCNTs:
1. Heterogeneity elemental nitrogen-doped carbon nanotubes can be effective in controlling the crystal structure and the electronic structure of carbon nanotubes to produce superior physical and chemical properties of pure carbon nanotubes.
2. Nitrogen atoms doped carbon nanotubes can cause distortion of the hexagonal topology, so as to increase the concentration of nitrogen-doped carbon nanotubes become bent by the relatively flat, while the increase is better than the defective wall roughened. Doping nitrogen atom reduces the thermal stability of the obtained product.
3. Carbon nanotubes electrode stability, high efficiency, with better response rates at high current, is a more superior supercapacitor electrode material. Nitrogen doping reduces the contact resistance and equivalent series resistance of carbon nanotubes electrodes, increase the frequency response.
4 nitrogen atoms doped carbon nanotubes changes polarity, making it easier to infiltrate the electrolyte in the carbon nanotube networks, improved electrochemical properties that have a good effect.
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