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Most industrial processes require cerium compounds, such as oxides, rather than the pure element. The glass industry employs these compounds to colour and decolourise glass and to polish spectacle lenses and optical instrument lenses. Industries also use them to prepare mirror surfaces and to manufacture other specialised glass products.
CeO2 Powder, Cerium Acetate, Cerium Carbonate, Cerium Hydroxide, Cerium Chloride, Cerium Fluoride, Cerium Oxalate, Cerium Ammonium Nitrate, Cerium Hexaboride Powder, Cerium Sulphide Powder, Cerium Sulphate Hydrate Powder, etc.
Purity: ≥99.9%
This portfolio comprises compounds that have been developed to meet industrial process requirements. Each formulation has been verified to achieve a purity level of at least 99.9%. Consequently, these compounds meet predefined performance criteria.
CeO2 Powder: Cerium dioxide powder is used in various applications including catalysts, fuel cells and polishing processes. It stores a measurable amount of oxygen and catalyses reactions according to established data.
Cerium Acetate: Cerium acetate plays a role in several chemical processes. Its precise formulation supports catalyst production, pharmaceutical synthesis and other chemical operations.
Cerium Carbonate, Hydroxide, Chloride and Fluoride: The portfolio includes cerium carbonate, hydroxide, chloride and fluoride. Each compound is utilised in ceramics, catalyst synthesis and advanced materials studies, as verified by standard tests.
Cerium Oxalate, Ammonium Nitrate: Cerium oxalate and cerium ammonium nitrate are applied in catalyst development and materials research. They facilitate chemical reactions and meet specific reaction parameters.
Cerium Hexaboride, Sulphide, Sulphate Hydrate: Cerium hexaboride, sulphide and sulphate hydrate each exhibit defined properties. They are used in thermoelectric applications and for optical coatings in controlled laboratory settings.
Catalytic Efficiency: Our compounds are employed in catalytic processes that have documented increases in reaction rates. They have been tested to meet standard operational parameters in chemical conversions.
Quality Assurance: Each compound is subjected to rigorous tests and quality control procedures to confirm a purity level of at least 99.9% and compliance with performance criteria.
Technical Expertise: Our technical team, including experts from Stanford Advanced Materials and Oceania International LLC, provides assistance in compound selection and application.
Versatility and Performance: The compounds have been validated for use in varied applications. Their performance parameters comply with industry standards in multiple sectors.
Global Reach: Our compounds have met regulatory standards in several international markets. They are available through our distribution network, which ensures delivery schedules and offers customer service.
Catalysis: Cerium compounds are used as catalysts in chemical conversions. They contribute to increased reaction rates and achieve specified selectivity parameters.
Energy Conversion: The compounds are applied in fuel cells, thermoelectric materials and energy storage systems. Their performance is verified by standard testing protocols.
Materials Science: Cerium compounds are integrated into ceramics, polishing agents and advanced materials research. Their use adheres to validated application guidelines.
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