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Yttrium Nitrate (CAS NO : 10361-93-0)

Yttrium Nitrate Hexahydrate (Y(NO₃)₃ • 6H₂O) is a highly soluble rare earth inorganic compound used in optical coatings, laser crystals, fluoride glasses, speciality ceramics, advanced catalysts, and advanced electronic materials due to its excellent thermal stability and chemical resistance. Our high-purity Yttrium Nitrate Hexahydrate is an advanced rare earth salt engineered to serve as a high-performance material for sol-gel materials synthesis, precision chemical vapour deposition, and advanced electronic materials research applications requiring controlled purity and consistent particle performance. Operating within a highly reliable global supply network, this strategic compound directly addresses the rigorous technical requirements. We are a premier Yttrium Nitrate Hexahydrate manufacturer for high-purity Yttrium Nitrate Hexahydrate, ensuring consistent melting points and precise assay values. To be a Yttrium Nitrate Hexahydrate supplier to deliver a comprehensive selection of Yttrium Nitrate Hexahydrate grades of 13773-61-0 (Hexahydrate) and 10361-93-0 (Anhydrous). We commit to full analytical documentation, including batch-specific trace-metal-content verification profiles and supporting quality assurance data, Yttrium Nitrate Hexahydrate COA and SDS. We also ensure secure supply chains from pilot-lot evaluations to multi-container commercial campaigns worldwide with reliable lead times and global supply capabilities and logistics coordination.

Yttrium Nitrate

Yttrium Nitrate Hexahydrate (Y(NO₃)₃ • 6H₂O) is a highly soluble rare earth inorganic compound used in optical coatings, laser crystals, fluoride glasses, speciality ceramics, advanced catalysts, and advanced electronic materials due to its excellent thermal stability and chemical resistance. Our high-purity Yttrium Nitrate Hexahydrate is an advanced rare earth salt engineered to serve as a high-performance material for sol-gel materials synthesis, precision chemical vapour deposition, and advanced electronic materials research applications requiring controlled purity and consistent particle performance. Operating within a highly reliable global supply network, this strategic compound direct...

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Chemical Properties & Specifications

Applications of Yttrium Nitrate

Sol-Gel Matrix Synthesis & Nano-Powders

Vital liquid-phase chemical precursor for sol-gel synthesis routes is used to produce ultra-fine, nanostructured yttria-stabilised zirconia (YSZ) powders and ceramic fibres

Gas Mantle Phosphors & Technical Textiles:

Active impregnation agent in technical textiles and high-temperature gas mantles to emit a highly stable, bright white light upon incandescent thermal activation

Three-Way Automotive Catalysts

Efficient liquid-phase doping precursor to introduce structural thermal stability into alumina and ceria-zirconia washcoats, preventing sintering under extreme exhaust temperatures

Precision Electro-Ceramics & Solid Oxide Fuel Cells (SOFC)

Applied in chemical co-precipitation loops to manufacture thin-film ceramic membranes, solid electrolytes, and multi-layer ceramic capacitors (MLCCs)

Advanced Material Precursor

A critical rare-earth source used for the synthesis of high-purity yttrium oxide (Y2O3), which is essential for manufacturing high-performance ceramics, optoelectronics, and laser crystals

Electronics and Semiconductor Material

A high-performance precursor used in sol-gel synthesis and chemical vapor deposition to deposit dielectric thin films for field-effect transistors and next-generation flexible display technologies

Catalyst

A versatile chemical reagent that serves as a reusable catalyst in the Biginelli reaction for heterocycle synthesis and other organic condensation processes

Specialized Optical Component

A primary ingredient in the production of optical coatings, fluoride glasses, and luminescent phosphors for energy-efficient LED lighting

Aerospace and Energy Material

A fundamental component used to create yttria-stabilized zirconia (YSZ) for thermal barrier coatings on turbine blades and as an electrolyte in solid oxide fuel cells (SOFCs).

Have Questions About Yttrium Nitrate?
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Our Yttrium Nitrate Hexahydrate formulations depends on absolute water and alcohol solubility, a zero-sediment baseline, and strict mitigation of transition metal cross-contamination. In sol-gel coatings and automated chemical synthesis, liquid-phase homogeneity directly dictates final processing metrics. The presence of unreacted sub-salts or partially hydrolyzed species generates microscopic turbidity and localized sedimentations. This variance creates structural inconsistencies and voids within thin films, ruining the protective properties of optical or thermal barriers.

Our advanced chemical processing line uses a highly monitored nitric acid dissolution loop followed by multi-stage crystallization under cleanroom conditions. This path guarantees a clear, sediment-free aqueous solution that dissolves rapidly without changing bath acidity profiles. Our Sol-Gel 4N5 Grade systematically restricts trace transition metals (Fe, Cu, Ni) and non-yttrium rare earth elements (Eu, Tb, La) to minimal parts-per-million thresholds. This control stops parasitic light absorption in laser mediums, prevents dielectric leakage in electronic configurations, and eliminates processing variations in continuous automated manufacturing workflows.

In thin-film anti-reflective coatings and optical glass preforms, iron ions introduce unwanted light absorption bands within both the ultraviolet and visible spectrums, discoloring the final layer and decreasing transmission efficiency. Furthermore, trace chlorides introduce micro-porosity during thermal drying and calcination steps, accelerating substrate corrosion and degrading coating durability. Our Sol-Gel 4N5 Grade limits iron to ≤ 2 ppm through advanced multi-stage crystallization, ensuring optimal optical transparency. To maintain these strict structural and purity thresholds, our standard commercial manufacturing lead time for container-scale allocations of this grade is 10 to 12 weeks.

Rare earth nitrates are classified as critical materials, making their international supply lines highly sensitive to fluctuating geopolitical export quotas, freight container space restrictions, and high spot-market price changes. Working with unhedged transactional trading desks leaves your automated assembly lines vulnerable to unexpected delivery extensions and irregular batch specifications. We insulate our global enterprise partners by aligning our synchronized chemical lines with secure regional distribution centers. For long-term contract partners, we offer a steady, predictable lead time of 6 to 8 weeks for standard 20 Metric Ton (1 FCL) sea-freight shipping allocations, backed by a fully compliant cross-border documentation path across more than 17 countries.

Yttrium Nitrate is a highly water-soluble crystalline rare earth salt primarily used as a precursor for yttrium oxide (Y2O3) and yttrium-based nanomaterials in ceramics, phosphors, and laser applications

This compound is widely utilized in the electronics, semiconductor, aerospace, energy, and chemical industries for applications ranging from LED lighting to thermal barrier coatings

It is a white crystalline solid compatible with aqueous solutions and ethanol, often used in sol-gel synthesis and chemical vapor deposition processes

Standard specifications include CAS number 13494-98-9 (hexahydrate), high purity (99.9% or higher), and available documentation such as COA, TDS, impurity reports, and regulatory compliance documents

Scimplify has capabilities for global distribution and custom synthesis through an integrated network of manufacturers and logistics partners with reliable lead time

The product is export ready with a standard MOQ starting from 100 kgs, with lead times for international customers depending on the shipping destination and specific grade.

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