

Yttrium Carbonate 38245-39-5 (Hydrate); 594-19-4 (Anhydrous) is a water-insoluble rare earth inorganic compound preferably used in optical coatings, laser crystals, structural ceramics, advanced catalysts, and electronic materials due to its excellent thermal stability and chemical resistance. Our high-purity Yttrium Carbonate Уг(СО₃)₃ •хН₂О is an advanced rare earth intermediate engineered to serve as a high-performance material for chemical synthesis, solid-state blending, and advanced 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 of advanced manufacturing sectors' precision applications. We are a premier Yttrium Carbonate manufacturer for high-purity Yttrium Carbonate, ensuring consistent melting points and precise assay values. To be a Yttrium Carbonate supplier, delivering a comprehensive selection of Yttrium Carbonate grades. We commit with full analytical documentation, including batch-specific Y₂O₃-equivalent assay verification profiles and supporting quality assurance data, Yttrium Carbonate COA & TDS. 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 in over 17+ countries, providing enterprises procurement commitment.

Yttrium Carbonate 38245-39-5 (Hydrate); 594-19-4 (Anhydrous) is a water-insoluble rare earth inorganic compound preferably used in optical coatings, laser crystals, structural ceramics, advanced catalysts, and electronic materials due to its excellent thermal stability and chemical resistance. Our high-purity Yttrium Carbonate Уг(СО₃)₃ •хН₂О is an advanced rare earth intermediate engineered to serve as a high-performance material for chemical synthesis, solid-state blending, and advanced materials research applications requiring controlled purity and consistent particle performance. Operating within a highly reliable global supply network, this strategic compound directly addresses the rigor...

Chemical Properties & Specifications
P261, P264+P265, P272, P280, P302+P352, P305+P351+P338, P321, P333+P317, P337+P317, P362+P364, and P501
Skin Sens. 1 (96.4%)
Eye Irrit. 2A (100%)
Optimal, clean-reacting feedstock for synthesizing high-purity yttrium acetates, neodecanoates, octoates, and stearates used as polymer stabilisers and paint driers
Integrated into speciality borosilicate glass matrices and optical fibres to increase structural density, mechanical scratch resistance, and the optical refractive index
High-surface-area catalytic promoter and washcoat stabiliser to prevent thermal degradation in emission control catalytic converters
Wet-chemical and co-precipitation routes to synthesise precision dielectric components, multi-layer ceramic capacitors (MLCCs), and microwave ferrites
A critical precursor used in the manufacture of high-purity phosphors for LED lighting, OLED displays, and tri-band fluorescent lamps to enhance brightness and color quality
A high-performance material utilized in the synthesis of advanced structural ceramics, high-temperature refractories, and wear-resistant cutting tools
A specialized compound employed in the production of optical coatings and laser crystals, such as yttrium-aluminum-garnet (YAG), for medical, industrial, and defense applications
A versatile rare earth intermediate used as a reagent in inorganic chemistry research and as a catalyst in various chemical reactions.
Commercial and operational efficiency of our Yttrium Carbonate formulations depends on managing its hydration state, maintaining a highly porous morphology, and strictly controlling non-yttrium rare earth cross-contamination. Unlike dense rare earth oxides that require aggressive mineral acids and prolonged heating to dissolve, yttrium carbonate undergoes rapid, clean acid-base neutralization. This reaction occurs at lower processing temperatures, which prevents the thermal degradation of delicate organic acid carriers during carboxylate synthesis.
Our advanced chemical precipitation loop carefully monitors crystal nucleation rates, yielding a powder with a highly porous, open structure. This fine particle design ensures uniform, predictable carbon dioxide (CO 2) gas evolution during acid charging, eliminating sudden foaming and process hazards in continuous chemical blending setups. Furthermore, we systematically restrict trace transition metals (Fe, Ni, Cu) and total rare earth impurities (TREO) to minimal parts-per-million levels. This prevents localized dielectric defects in ceramic capacitors and stops color variations in luxury optical glass formulations.
When manufacturing yttrium carboxylates (such as tire adhesion promoters or PVC stabilizers), dense carbonate crystals dissolve slowly, forcing engineers to raise reactor temperatures. This slow process can cause sudden carbon dioxide (CO2) gas evolution that leads to reactor foam-over hazards. Our Pure 4N5 Grade features a highly porous, open crystalline framework that react smoothly and uniformly with organic acids at room temperature. This low-temperature dissolution shortens cycle times and prevents the organic acids from breaking down. To maintain these strict structural and purity metrics, our standard commercial manufacturing lead time for container-scale allocations of this grade is 8 to 10 weeks.
In multi-layer ceramic capacitors (MLCCs) and precision electronics, yttrium acts as a core-shell grain modifier to regulate capacitance stability across varying operating temperatures. If the yttrium precursor contains trace chlorides, these ions cause structural micro-voids during high-temperature sintering, accelerating dielectric leakage and causing component failure. Our specialized electronic production lines restrict chlorides to ≤ 0.005% and iron to ≤ 5 ppm. For enterprise-scale continuous manufacturing lines, we offer long-term volume contracts that provide a steady, repeatable lead time of 6 to 8 weeks for standard 20 Metric Ton (1 FCL) sea- freight container deliveries.
Rare earth intermediates like Yttrium Carbonate are classified globally as critical strategic materials. This subjects their supply chains to shifting international export permits, regulatory environmental compliance updates, and high spot-market price volatility. Relying on transactional open-market trade desks exposes your operations to irregular batch specifications and unexpected customs delays. We eliminate this commercial risk by offering structured volume supply contracts paired with pre-allocated factory run times and strategically located regional distribution networks. This infrastructure ensures predictable quarterly pricing and secure buffer stock reserves, delivering full cross-border supply continuity across more than 17 countries.
Yttrium Carbonate is a water-insoluble rare earth inorganic compound used as a precursor for other yttrium compounds like yttrium oxide, and is essential in optical coatings, laser crystals, structural ceramics, and electronic materials
This compound is widely used in the ceramics, electronics, glass, phosphor, materials science, and medical imaging industries
It is insoluble in water but soluble in acids, and is typically processed as a white powder used in chemical synthesis and solid-state blending
Standard specifications include CAS numbers 594-19-4 (Anhydrous) or 38245-39-5 (Hydrate), high purity (≥99.9% metals basis), 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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