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Stannate denotes compounds containing tin (Sn). Tin acid (Sn(OH)4) is the formal precursor of stannates; it does not exist and is a hydrate of SnO2.
Natriumstannat (Na2SnO3) Stabilisers: Natriumstannat is used as a stabiliser in textile and dyeing processes. It prevents dye reduction, thereby improving colour retention and dyeing efficiency.
Bariumstannat (BaSnO3) - Electronic Materials: Bariumstannat is employed in the production of ceramic capacitors and electronic multilayer components. Its high dielectric constant supports the reliable manufacture of electronic devices.
Kaliumstannat (K2SnO3) Catalysis: Kaliumstannat is used as a catalyst in various organic reactions. It facilitates chemical transformations as indicated by laboratory results.
Colour Retention: Natriumstannat stabilisers maintain consistent colour in textiles and dyes by preventing dye reduction, thereby ensuring prolonged colour stability.
Electronics Performance: The high dielectric constant of Bariumstannat contributes to the manufacture of electronic components, thereby supporting enhanced operational performance.
Catalytic Activity: Kaliumstannat acts as a catalyst in chemical processes, thereby increasing reaction rates as demonstrated in controlled experiments.
Reliability: Our stannate products are engineered for stability and consistency, thereby retaining their performance under demanding conditions.
Customisation: Various stannate compounds are available to meet specific application requirements, thereby allowing precise formulation selection.
Technical Expertise: Our team, including specialists from Stanford Advanced Materials, is available to advise on product selection and optimisation for your project.
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