Lab Materials
High Purity Molybdenum Oxide (MoO3) Sputtering Target / Powder / Wire / Block / Granule
Item Number : LM-MoO3
Price varies based on specs and customizations
- Chemical Formula
- MoO3
- Purity
- 3N
- Shape
- discs / wire / block / powder / plates / column targets / step target / custom-made
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We offer Molybdenum Oxide (MoO3) materials that are perfect for laboratory use, all at reasonable prices. Our expertise lies in producing and customizing Molybdenum Oxide (MoO3) materials to suit your unique requirements.
We provide a diverse range of specifications and sizes for our sputtering targets, including circular, square, tubular, and irregular shapes. Additionally, we offer a wide variety of coating materials, such as cylinders, cones, particles, foils, powders, 3D printing powders, nanometer powders, wire rods, ingots, and blocks, among others.
Details
About Molybdenum Oxide (MoO3)
Molybdenum Oxide is a highly insoluble and thermally stable source of Molybdenum. It finds extensive use in glass, optic, and ceramic applications. Molybdenum oxide appears as a yellow or light blue solid and is the most produced molybdenum compound. The compound is created by roasting molybdenum disulfide, which is the primary molybdenum ore.
Oxide compounds are not conductive to electricity, but certain perovskite-structured oxides are electronically conductive, and they find use in the cathode of solid oxide fuel cells and oxygen generation systems. These compounds contain at least one oxygen anion and one metallic cation. They are typically insoluble in aqueous solutions and highly stable, making them useful in ceramic structures ranging from simple clay bowls to advanced electronics and lightweight structural components in aerospace and electrochemical applications such as fuel cells in which they exhibit ionic conductivity.
Metal oxide compounds are basic anhydrides and can, therefore, react with acids and strong reducing agents in redox reactions. Molybdenum Oxide is available in different forms such as pellets, pieces, powder, sputtering targets, tablets, and nanopowder. It is generally available in most volumes, and high purity, submicron, and nanopowder forms are also available.
Ingredient Quality Control
- Raw material composition analysis
- Through the use of equipment such as ICP and GDMS, the content of metal impurities is detected and analyzed to ensure that it meets the purity standard;
Non-metallic impurities are detected by equipment such as carbon and sulfur analyzers, nitrogen and oxygen analyzers. - Metallographic flaw detection analysis
- The target material is inspected using flaw detection equipment to ensure that there are no defects or shrinkage holes inside the product;
Through metallographic testing, the internal grain structure of the target material is analyzed to ensure that the grains are fine and dense. - Appearance and dimension inspection
- Product dimensions are measured using micrometers and precision calipers to ensure compliance with drawings;
The surface finish and cleanliness of the product are measured using a surface cleanliness meter.
Conventional Sputtering Target Sizes
- Preparation process
- hot isostatic pressing, vacuum melting, etc.
- Sputtering target shape
- plane sputtering target, multi-arc sputtering target, step sputtering target, special-shaped sputtering target
- Round sputtering target size
- Diameter: 25.4mm / 50mm / 50.8mm / 60mm / 76.2mm / 80mm / 100mm / 101.6mm / 152.4mm
Thickness: 3mm / 4mm / 5mm / 6mm / 6.35mm
Size can be customized. - Square sputtering target size
- 50×50×3mm / 100×100×4mm / 300×300×5mm, size can be customized
Available Metal Forms
Metal Forms Details
We manufacture almost all the metals listed on the periodic table in a wide range of forms and purities, as well as standard sizes and dimensions. We can also produce custom-made products to meet specific customer requirements, such as size, shape, surface area, composition, and more. The following list provides a sample of the forms we offer, but it is not exhaustive. If you need laboratory consumables, please contact us directly to request a quote.
- Flat/Planar Forms: Board, Film, Foil, Microfoil, Microleaf, Paper, Plate, Ribbon, Sheet, Strip, Tape, Wafer
- Preformed Shapes: Anodes, Balls, Bands, Bars, Boats, Bolts, Briquettes, Cathodes, Circles, Coils, Crucibles, Crystals, Cubes, Cups, Cylinders, Discs, Electrodes, Fibers, Filaments, Flanges, Grids, Lenses, Mandrels, Nuts, Parts, Prisms, Pucks, Rings, Rods, Shapes, Shields, Sleeves, Springs, Squares, Sputtering Targets, Sticks, Tubes, Washers, Windows, Wires
- Microsizes: Beads, Bits, Capsules, Chips, Coins, Dust, Flakes, Grains, Granules, Micropowder, Needles, Particles, Pebbles, Pellets, Pins, Pills, Powder, Shavings, Shot, Slugs, Spheres, Tablets
- Macrosizes: Billets, Chunks, Cuttings, Fragments, Ingots, Lumps, Nuggets, Pieces, Punchings, Rocks, Scraps, Segments, Turnings
- Porous and Semi-Porous: Fabric, Foam, Gauze, Honeycomb, Mesh, Sponge, Wool
- Nanoscale: Nanoparticles, Nanopowders, Nanofoils, Nanotubes, Nanorods, Nanoprisms
- Others: Concentrate, Ink, Paste, Precipitate, Residue, Samples, Specimens
KinTek specializes in the manufacturing of high-purity and ultra-high-purity materials with a purity range of 99.999% (5N), 99.9999% (6N), 99.99995% (6N5), and in some cases, up to 99.99999% (7N). Our materials are available in specific grades, including UP/UHP, semiconductor, electronic, deposition, fiber optic, and MBE grades. Our high-purity metals, oxides, and compounds are specifically crafted to meet the rigorous demands of high-technology applications and are ideal for use as dopants and precursor materials for thin film deposition, crystal growth of semiconductors, and synthesis of nanomaterials. These materials find use in advanced microelectronics, solar cells, fuel cells, optical materials, and other cutting-edge applications.
Packaging
We use vacuum packaging for our high-purity materials, and each material has specific packaging tailored to its unique characteristics. For instance, our Hf sputter target is externally tagged and labeled to facilitate efficient identification and quality control. We take great care to prevent any damage that could occur during storage or transportation.
4.9
out of
5
The Molybdenum Oxide (MoO3) materials arrived promptly and were packaged with great care. Thank you for the excellent service!
4.8
out of
5
The quality of the Molybdenum Oxide (MoO3) materials is outstanding. They meet all of our laboratory's requirements.
4.7
out of
5
The Molybdenum Oxide (MoO3) materials are an excellent value for the price. We will definitely be ordering again.
4.9
out of
5
The Molybdenum Oxide (MoO3) materials are very durable and have lasted us for a long time. We are very satisfied with their performance.
4.8
out of
5
The Molybdenum Oxide (MoO3) materials are technologically advanced and have helped us to improve our research.
4.7
out of
5
The Molybdenum Oxide (MoO3) materials are easy to use and have helped us to streamline our laboratory processes.
4.9
out of
5
The Molybdenum Oxide (MoO3) materials are versatile and can be used for a variety of applications. We are very happy with their versatility.
4.8
out of
5
The Molybdenum Oxide (MoO3) materials are reliable and have never failed us. We highly recommend them to other laboratories.
4.7
out of
5
The Molybdenum Oxide (MoO3) materials are a great addition to our laboratory. They have helped us to improve our research and development efforts.
4.9
out of
5
The Molybdenum Oxide (MoO3) materials are very affordable and have helped us to save money on our laboratory supplies.
4.8
out of
5
The Molybdenum Oxide (MoO3) materials are very efficient and have helped us to improve our productivity in the laboratory.
4.7
out of
5
The Molybdenum Oxide (MoO3) materials are very effective and have helped us to achieve better results in our research.
4.9
out of
5
The Molybdenum Oxide (MoO3) materials are very safe to use and have helped us to improve the safety of our laboratory.
4.8
out of
5
The Molybdenum Oxide (MoO3) materials are very environmentally friendly and have helped us to reduce our environmental impact.
4.7
out of
5
The Molybdenum Oxide (MoO3) materials are very sustainable and have helped us to reduce our consumption of resources.
4.9
out of
5
The Molybdenum Oxide (MoO3) materials are very innovative and have helped us to develop new and improved products.
4.8
out of
5
The Molybdenum Oxide (MoO3) materials are very versatile and can be used for a variety of applications. We are very happy with their versatility.
4.7
out of
5
The Molybdenum Oxide (MoO3) materials are very reliable and have never failed us. We highly recommend them to other laboratories.
4.9
out of
5
The Molybdenum Oxide (MoO3) materials are a great addition to our laboratory. They have helped us to improve our research and development efforts.
4.8
out of
5
The Molybdenum Oxide (MoO3) materials are very affordable and have helped us to save money on our laboratory supplies.
4.7
out of
5
The Molybdenum Oxide (MoO3) materials are very efficient and have helped us to improve our productivity in the laboratory.
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