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Potassium Trimolybdate Nanowire

Potassium Trimolybdate Nanowire

Product Details:

  • Structural Formula Mo3O10^2- (with 2K+ ions)
  • HS Code 28419000
  • Taste Tasteless
  • Storage Store in tightly closed container, dry and cool place
  • Density 3.95 Gram per cubic centimeter(g/cm3)
  • Smell Odorless
  • Other Names Kalium Trimolybdate
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Potassium Trimolybdate Nanowire Product Specifications

  • Potassium Trimolybdate
  • Store in tightly closed container, dry and cool place
  • Odorless
  • 3.95 Gram per cubic centimeter(g/cm3)
  • Nanowire
  • Slightly soluble in water, insoluble in ethanol and acetone
  • Tasteless
  • Decomposes before boiling
  • 28419000
  • Mo3O10^2- (with 2K+ ions)
  • 235-527-8
  • >99%
  • Industrial research, advanced material synthesis
  • Inorganic Compound
  • Powder/Nanowire
  • Analytical/Reagent Grade
  • 13721-39-6
  • Nanowire
  • K2Mo3O10
  • Conforms to analytical standards
  • Potassium Trimolybdate
  • Used in ceramics, catalysts, and optical materials
  • 790C (approx)
  • ~7 (1% solution, neutral)
  • Yes
  • 462.1 g/mol
  • Kalium Trimolybdate

Potassium Trimolybdate Nanowire Trade Information

  • South America, Western Europe, Australia, Africa, Middle East, Asia, Central America, Eastern Europe, North America
  • All India

Product Description



Experience the ultimate value with our Potassium Trimolybdate Nanowire, now available at a special Price Cut on advance purchase. Featuring a radiant white color and famed for its high thermal stability and orthorhombic crystal structure, these nanowires (diameter <100 nm) promise exceptional surface area benefits for advanced industrial research. Produced via hydrothermal synthesis and ISO 9001:2015 certified, our premium-grade nanowires offer unmatched purity (>99%) and moderate electrical conductivity, making them ideal for ceramics, catalysts, and optical materials. Secure long-lasting shelf life with foil-sealed packaging, ensuring the compounds integrity.

Applications of Potassium Trimolybdate Nanowire

Potassium Trimolybdate Nanowires are engineered for advanced material synthesis in major industrial research sectors. Their unique properties find application in ceramics manufacturing, as effective catalysts, and within high-performance optical materials. The nanowire morphology offers a remarkable increase in surface area, making them especially suitable for surfaces requiring active chemical interaction or enhanced conductivity. These qualities make them an asset in laboratories, pilot-scale industries, and R&D settings where analytical precision and purity are paramount.


Packaging, Supply Ability, and Certifications

Each batch of Potassium Trimolybdate Nanowires is delivered in secure, foil-sealed bottles or ampoules to ensure product stability during shipment. We offer prompt quotations and competitive list prices for bulk and advance orders. With robust supply capacity to meet dealer and distributor requirements, every product conforms to strict analytical standards and arrives with ISO 9001:2015 certification, guaranteeing quality and traceability throughout the manufacturing and delivery process.


FAQs of Potassium Trimolybdate Nanowire:


Q: How should Potassium Trimolybdate Nanowire be stored for maximum stability?

A: Store the nanowires in tightly closed containers in a dry, cool place to maintain their high purity and extend the shelf life up to 12 months.

Q: What are the main application areas for Potassium Trimolybdate Nanowires?

A: They are primarily used in ceramics production, as catalysts in chemical processes, and in the development of optical materials due to their high surface area and stability.

Q: What is the process for manufacturing Potassium Trimolybdate Nanowires?

A: These nanowires are synthesized via a hydrothermal process and undergo purification through high-temperature filtration, followed by ISO 9001:2015 certified production protocols.

Q: When can I receive a quotation or list price for bulk orders?

A: Quotations and list prices are available upon request. Please contact us directly, indicating your required quantity and shipment details for a tailored offer.

Q: What benefits do nanowire morphologies provide in industrial applications?

A: The nanowire shape significantly increases surface area, enhancing contact and reactivity in catalytic and optical applications while maintaining excellent structural stability.

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