Multi Layer Niobium Carbide Mxene Powder
₹0.00
Product Name: Multi Layer Niobium Carbide Mxene Powder
| Product | Multi Layer Niobium Carbide Mxene Powder |
| CAS No. | N.A. |
| Appearance | Powder |
| Purity | 99.9% |
| APS | 1 – 5 microns (can be customized) |
| Ingredient | Nb2C |
| Product Code | NCZ-AE-222 |
DESCRIPTION
Max phase ceramics (including Ti3SiC2, Ti3AlC2, etc.) is a new type of Machinable conductive ceramic material that has attracted much attention. These ceramics contain more than 60 kinds of ternary carbides or nitrides. M represents the front metal elements of the transition group; a represents the main group elements, mainly the elements of the third and fourth main groups; X represents carbon or nitrogen elements. Among them, Ti3SiC2 is the most widely studied. Ti3SiC2 was successfully synthesized by barsoum m, Professor of Drexel University in 1996, and its excellent properties were found. Due to the unique nano layered crystal structure, this kind of ceramic material has the properties of oxidation resistance, self lubrication, high room temperature fracture toughness and conductivity. This kind of materials can be widely used as high temperature structural materials, electrode brush materials, chemical anti-corrosion materials and high temperature heaters Products are mainly used in high temperature coating, mxene precursor, conductive self-lubricating ceramics, lithium-ion batteries, super capacitors, electrochemical catalysis.
RELATED INFORMATION
Storage Conditions:
Airtight sealed, avoid light, and keep dry at room temperature.
Please email us for the customization.
Email: contact@nanochemazone.com
Note: For pricing & ordering information, please contact us at sales@nanochemazone.com
Please contact us for quotes on Larger Quantities & Customization. E-mail: contact@nanochemazone.com
Customization:
If you are planning to order large quantities for your industrial and academic needs, please note that customization of parameters (such as size, length, purity, functionalities, etc.) are available upon request.
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As with many nanoparticles, silicon produces unexpected optical properties as a nanostructure, due to the confinement of electrons and quantum effects. This makes them of particular interest in fields ranging from simple aesthetic design work to solar energy research. As with many other nanopowders, silicon nanopowders have also been thoroughly researched for applications in biomedicine and biosensing.
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Solar Energy Cell. Due to its unique optical and conductive properties, silicon nanopowder serves as a key material in the production of various solar energy cells, including thin film solar cells and amorphous silicon solar cells. Continued research shows multiple avenues to improve the efficiency, efficacy, and cost of producing solar cells with these materials and other nanomaterials exhibiting similar optical properties.
Lithium-ion Battery. One of the most exciting applications of silicon nanoparticles, revealed by research a few years ago. Scientists utilizing silicon nanoparticles have produced lithium-ion batteries with extreme performance, as high as triple the energy storage potential of regular lithium-ion batteries. Research continues to seek ways to make the most of silicon nanostructures in energy storage.
Drug delivery. As drug delivery technology grows increasingly important to medicine, silver nanoparticles have seen heavy research as a potential tool for controlled drug delivery. The biocompatibility, biogradability, high surface area, controllable pore sizes, and optical properties of silicon nanoparticles combine to make them an excellent candidate for research.
Keywords: Silicon nanopowder, Silicon nanocrystals, Silicon nano-particles, Silicon nano-powder, nanosilicon, nano-silicon.
RELATED INFORMATION Storage Conditions: Airtight sealed, avoid light and keep dry at room temperature. Please email us for the customization. Email: contact@nanochemazone.com Note: We supply different size ranges of nano and micron size powder as per the client’s requirements and also accept customization in various parameters.

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