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Please contact us for quotes on Larger Quantities and customization. E-mail: contact@nanochemazone.com
Customization:
If you are planning to order large quantities for your industrial and academic needs, please note that customization of parameters (such as size, length, purity, functionalities, etc.) is available upon request.
NOTE:
Images, pictures, colors, particle sizes, purity, packing, descriptions, and specifications for the real and actual goods may differ. These are only used on the website for the purposes of reference, advertising, and portrayal. Please contact us via email at sales@nanochemazone.com or by phone at +1-780-612-4177 if you have any questions.
FAQs
Q1: What is palladium cerium oxide dispersion?
Palladium cerium oxide dispersion is a liquid formulation in which palladium and cerium oxide (CeO₂) nanoparticles, typically around 30 nm in size and with high purity (~99.9 %), are uniformly suspended in a carrier medium to deliver stable mixed metal oxide nanoparticles for advanced materials research and applications.
Q2: What are the key components in this dispersion?
The dispersion consists of palladium, a platinum‑group metal with catalytic and electrical activity, combined with cerium oxide, a rare earth oxide known for redox capability and oxygen storage properties, creating a functional mixed oxide system.
Q3: What applications use palladium cerium oxide dispersion?
Palladium cerium oxide dispersion is used in catalytic research, fuel cell electrode development, environmental remediation catalysts, and materials science studies where mixed metal oxides support enhanced reactivity and surface interactions.
Q4: What particle size range does this dispersion offer?
This dispersion is typically supplied with an average particle size of around 30 nm, and particle size customization is available on request to suit specific performance and processing needs.
Q5: What purity level does palladium cerium oxide dispersion have?
The product is supplied with a high purity level (approximately 99.9 %), minimizing impurities that could adversely affect catalytic performance, conductivity, or material integration in advanced formulations.
