Bismuth Tungsten oxide Powder
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 Bismuth Tungsten oxide Powder
Product Name: Â Bismuth Tungsten oxide Powder
| Product |
 Bismuth Tungsten oxide Powder |
| CAS No. | 13595-87-4 |
| Appearance | Â White Powder |
| Purity | 99.9% |
| APS | 1 – 5 Microns (Can be customized) |
| Ingredient | Bi2(WO4)3 |
| Product Code | NCZ-NSC-266/20 |
Description:
Acts as a visible-light-driven photocatalyst.
RELATED INFORMATION
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
Please contact us for customization and price inquiry
Email: contact@nanochemazone.com
Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
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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| EINECS | 234-499-3 |
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Product Name: Copper-Nickel Micron Powder
| Product | Â Copper Nickel Powder |
| CAS No. | 12357-13-0 |
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| Purity | 99.9% |
| APS | 1 – 5 Microns (Can be customized) |
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Product Name: Hafnium Carbide Powder
| Product | Hafnium Carbide Powder |
| Colour | Gray Powder |
| Purity | ≥ 99.9% |
| Particle size | 1-10 µM (customizable) |
| Ingredient/MF | Â HfC |
| Product Code | NCZ-C-103/20 |
| CAS Number | 12069-85-1 |
Brief Description of Hafnium carbide powder HfC:Â
Hafnium carbide ( HfC) is a chemical compound of hafnium and carbon With a melting point of about 3900 °C it is one of the most refractory binary compounds known. However, it has low oxidation resistance, with the oxidation starting at temperatures as low as 430 °C Hafnium carbide is usually carbon deficient and therefore its composition is often expressed as HfCx (x = 0.5 to 1.0). It has a cubic (rock-salt) crystal structure at any value of x Application of Hafnium carbide powder HfC:
- Used for preparation of ultra-high temperature ceramics
- The reactant in the synthesis of hafnium-containing organometallic polymers
- Used as an additive in alloys
- Used in coatings
- Widely used in microelectronics, semiconductor, aerospace high-temperature resistant material, coating materials, ceramic materials, ceramic target material, etc.
Hafnium carbide Powder related Information
Please email us for the customization. Email: contact@nanochemazone.com Please contact us for customization and price inquiry Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.Niobium Boride Powder
Niobium Boride Powder
Product Name: Niobium Boride Powder
| MF | NbB |
| Chemical Name | Niobium Boride Powder |
| EINECS | 235-723-2 |
| Purity | 99.9% |
| Molecular weight | 103.72 |
| Product Number | NCZ-SC-112/20 |
| Cas Number | 12007-29-3 |
| Density | 7.39g/ml |
Niobium Boride Powder
Niobium boride Powders having NbB, NbB2, and Nb3B4 phases in various amounts and single-phase NbB powders were successfully synthesized by using powder metallurgy methods from related metal oxide raw materials in the presence of a strong reducing agent. Nb2O5, B2O3, and Mg powder blends were milled at room temperature by a high-energy ball mill for a different time. Subsequently, an undesired MgO phase was removed from the milled powders by HCl leaching to constitute NbB–NbB2–Nb3B4 as final products, and they were subjected to an annealing process at 1500 °C for 4 h to observe probable boride transformation. Characterization was carried out by XRD, DSC, PSA, SEM/EDX, TEM, and VSM.
The effects of milling time (up to 9 h) on the formation, microstructure, and thermal behavior of the final products were investigated. The reduction reaction took place after milling stoichiometric powder blends for 2 h. Nano-sized NbB–NbB2–Nb3B4 powders in high purity were obtained in the absence of any secondary phase and any impurity via mechanochemistry by milling for 5 h and leaching with 4 mol/L HCl. After annealing, pure and nano-sized NbB–NbB2–Nb3B4 powders transformed to a single NbB phase without leaving behind NbB2 and Nb3B4 phases.
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Niobium Boride Powder
Product Name: Niobium Boride Powder
| MF: | NbB |
| Chemical Name | Niobium Boride Powder |
| EINECS: | 235-723-2 |
| Purity: | 99.9% |
| Molecular weight: | 103.72 |
| Product Number: | NCZ-SC-112/20 |
| Cas Number: | 12619-90-8 |
| Density | 7.39g/ml |
Niobium Boride Powder Related Information
Niobium boride powders having NbB, NbB2 and Nb3B4 phases in various amounts and single phase NbB powders were successfully synthesized by using powder metallurgy methods from related metal oxide raw materials in the presence of a strong reducing agent. Nb2O5, B2O3 and Mg powder blends were milled at room temperature
A high-energy ball mill for different time. Subsequently, an undesired MgO phase was removed from the milled powders by HCl leaching to constitute NbB–NbB2–Nb3B4 as final products, and they were subjected to an annealing process at 1500 °C for 4 h to observe probable boride transformation. Characterization was carried out by XRD, DSC, PSA, SEM/EDX, TEM, and VSM. The effects of milling time (up to 9 h) on the formation, microstructure, and thermal behavior of the final products were investigated.
The reduction reaction took place after milling stoichiometric powder blends for 2 h. Nano-sized NbB–NbB2–Nb3B4 powders in high purity were obtained in the absence of any secondary phase and any impurity via mechanochemistry by milling for 5 h and leaching with 4 mol/L HCl. After annealing, pure and nano-sized NbB–NbB2–Nb3B4 powders transformed into a single NbB phase without leaving behind NbB2 and Nb3B4 phases.
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Product Name: Tantalum Carbide Powder
| Product | Tantalum Carbide Powder |
| Colour | Brown-Gray |
| Purity | ≥ 99.9% |
| Particle size | 1-10 µM (customizable) |
| Ingredient/MF | TaC |
| Product Code | NCZ-C-105/20 |
| CAS Number | 12070-06-3 |
Tantalum carbide Powder Description:
Tantalum carbides form a family of binary chemical compounds of tantalum and carbon with the empirical formula TaCx, where usually varies between 0.4 and 1. They are extremely hard, brittle, refractory ceramic materials with metallic electrical conductivity. They appear as brown-Gray powders, which are usually processed by sintering. Being important cermet materials, tantalum carbides are commercially used in tool bits for cutting applications and are sometimes added to tungsten carbide alloys.Properties of TaC Tantalum carbide powder:
Tantalum carbides have metallic electrical conductivity, both in terms of its magnitude and temperature dependence. TaC is a superconductor with a relatively high transition temperature of TC = 10.35 K. Application of TaC Tantalum carbide powder- Widely used in the production of microwave absorbing materials, metal powder injection
- Used as all kinds of superhard material and powder metallurgy products additives etc.
- Used as a cutting tool.
- Used for delicate Ceramics.
- Hard wear-resistant alloy tools, tools, molds, and wear-resistant corrosion-resistant structural components additive, improve the toughness of the alloy.
- Tantalum carbide sintered shown in gold, watches can be made decorations.
Titanium Carbide Powder
Titanium Carbide Powder
Product Name: Titanium Carbide Powder
| Product | Titanium Carbide Powder |
| Colour | Grey |
| Purity | ≥ 99.9% |
| Particle size | 1-10 µM (customizable) |
| Ingredient/MF | TiC |
| Product Code | NCZ-C-106/20 |
| CAS Number | 12070-08-5 |
Titanium Carbide Powder Description :
Titanium Carbide (TIC) is a Gray metallic powder with a cubic system structure. With high-wear resistance, perfect corrosion resistance and high-temperature resistance, As hardness material, it’s widely used as the thermal spray coating powder material, the welding material, the flinty membranous material, the military aviation material, the hard alloy, and the cermet. Titanium carbide, TiC, is an extremely hard (Mohs 9-9.5) refractory ceramic material, similar to tungsten carbide. It has the appearance of black powder with the sodium chloride (face-centered cubic) crystal structure. Also, the product has good conductivity and chemical inert ability to steel and ironApplication of Titanium Carbide TiC:
1. The carbide is mainly used in the manufacturing of cermet, heat-resistant alloy, and cemented carbide due to its high melting point, high hardness, and good chemical stability.- Applies in the spray coating material, the welding material, the flinty membranous material, the military aviation material, the hard alloy, and the cermet.
- Used in the preparation of cermets, which are frequently used to machine steel materials at high cutting speed.
- Used as an abrasion-resistant surface coating on metal parts, such as tool bits and watch mechanisms.
- Used as a heat shield coating for atmospheric reentry of spacecraft.
Vanadium Carbide Powder
Vanadium Carbide Powder
Product Name: Vanadium Carbide Powder
| Product | Vanadium Carbide Powder |
| Colour | Grey Powder |
| Purity | ≥ 99.9% |
| Particle size | 1-10 µM (customizable) |
| Ingredient/MF | VC |
| Product Code | NCZ-C-108/20 |
| CAS Number | 12070-10-9 |
Vanadium Carbide Description:
Vanadium carbide is the inorganic compound with the formula VC. It is an extremely hard refractory ceramic material. With a hardness of 9-9.5 Mohs, it is possibly the hardest metal-carbide known. It is of interest because it is prevalent in vanadium metal and alloys. Vanadium carbide is Gray metallic powder with a cubic system structure of NaCl type, the crystalline constant is 4.182A. The carbide is chemically stable and has excellent high-temperature property.Application:Â
- Used in mechanical lapping
- Used as engineering ceramic materials
- Used for metallurgy refractory
- Used for temperature hot accidentally
- Used in faraday shield
- Applies in flinty domains and so on thin film, target material, welding material, hard alloy, cermet, aerospace
- May improve the hard alloy as the hard alloy and cermet’s chemical additive each performance.
- It can be used in cutting tool and steel industry,
- also can be used as an additive to fine the WC cemented carbide crystal to improve the property of alloy. 3. Used for erosion-resistant coatings; wear-resistance coatings; Corrosion-resistant coatings; Wear-resistant parts……

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