Palladium Oxide Monohydrate
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Palladium Oxide Monohydrate Powder
Product |
Palladium Oxide Monohydrate Powder |
| Colour | Black |
| Purity | 99% |
| Particle size | 100-325 Mesh (customizable) |
| Ingredient/MF | PdO•H2O |
| Density | 8.3 g/cm3 |
| Solubility in water | insoluble |
| Product Code | NCZ-CP-215/20 |
| CAS Number | 64109-12-2 |
Palladium Oxide Monohydrate
Palladium oxide is a greenish black powder that is immune High Purity (99.999%) Palladium Oxide (PdO) Powder to acids but reverts to palladium metal above 900 c. Oxide compounds are not conductive to electricity. However, certain perovskite structured oxides are electronically conductive finding application in the cathode of solid oxide fuel cells and oxygen generation systems. They are compounds containing at least one oxygen anion and one metallic cation.
Platinum Oxide Monohydrate is generally immediately available in most volumes, including bulk quantities. Nanochemazone can produce most materials in high purity and ultra high purity (up to 99.99999%) forms and follows applicable ASTM testing standards; a range of grades are available including Mil Spec (military grade), ACS, Reagent and Technical Grade, Food, Agricultural and Pharmaceutical Grade, Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia).
We can also produce materials to customer specifications by request, in addition to custom compositions for commercial and research applications and new proprietary technologies. Typical and custom packaging is available, as is additional research, technical and safety (MSDS) data.
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.
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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Please contact us for customization and price inquiry
Email: contact@nanochemazone.com
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| Cat No | NCZ-MN-258/20 |
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| APS | 1-10 µM, 10-25 µM 25- 45 µM (Customizable) |
| Purity | 99.5% |
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| Melting Point | ~ 2680 deg C |
| Solubility | Insoluble in Water |
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| Fe | 0.01% |
| Na | 0.01% |
| Al | 0.1% |
| Si | 0.1% |
| Ca | 0.005% |
| Sr | 0.02% |
| Pb | 0.001% |
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| Purity | >99% |
| APS | 400 nm (Customizable) |
| Appearance | Black Brown Powder |
| Molecular Weight | 44.08 |
| Melting Point | 1702°C |
| Boiling Point | 1880°C |
| Density | 2.13g/cm³ |
| Refractive index | 1.980 |
| Application | Plating of optical equipment such as lens |
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| Al | <20 ppm |
| Cu | <10 ppm |
| Ti | <10 ppm |
| Ca | <10 ppm |
| Mn | <30 ppm |
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Lithium-ion secondary battery anode material precursors to prepare silicon-based anode material Fine ceramic, synthetic raw materials; such as silicon nitride and silicon carbide Because silicon monoxide fine powder is very active, it can be used as fine ceramic, synthetic raw materials, such as silicon nitride and silicon carbide fine ceramic powder raw materials. Used for the preparation of optical glass and semiconductor materials.
Evaporate it in a vacuum and coat it on the metal mirror surface of the optical instrument as a protective film. Preparation of semiconductor materials.
The hunt is on advanced battery materials with enhanced storage capacity, higher energy density, and better cycle characteristics than traditional lithium-ion batteries. Conventional lithium-ion batteries rely on graphite-based anodes, whose well-established properties aren’t ideal for meeting the growing consumer demand for high-performance electronics, such as smartphones, laptops, and electric vehicles. Current research focuses on developing new alternatives that perform better and are safer than lithium-ion, and Nanochemazone is leading the way.
Silicon monoxide is a promising alternative to graphite because of its high specific gravity, low volume expansion, and small initial surface area. Silicon-based anodes can increase capacity ten times over standard graphite, allowing smaller batteries to produce the same amount of power or increasing the ability of a battery of the same size. This is possible because of the internal channels within the silicon monoxide Nanospheres. These channels allow lithium ions to flow rapidly for quick charging, and they shorten the paths for a boost in power.
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