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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 cobalt ethylene glycol dispersion?
Cobalt ethylene glycol dispersion is a liquid system in which cobalt nanoparticles (average size around 28 nm) are uniformly suspended in ethylene glycol as the carrier fluid, providing a stable nanoparticle dispersion suitable for research and formulation development.
Q2: What is cobalt ethylene glycol dispersion used for?
Cobalt ethylene glycol dispersion is used in catalyst research, nanofluid studies, thermal and magnetic material investigations, and advanced coating or composite formulations where dispersed metal nanoparticles improve functional properties.
Q3: How does ethylene glycol affect the dispersion of cobalt nanoparticles?
Ethylene glycol acts both as a dispersion medium and stabilizing solvent, helping to maintain cobalt nanoparticles uniformly suspended and reducing agglomeration tendencies compared with dry powders, which improves handling and performance in liquid formulations.
Q4: What particle size range is typical for cobalt ethylene glycol dispersion?
Cobalt ethylene glycol dispersion is typically supplied with an average particle size around 28 nm, and this size range can be customized according to specific research or processing needs.
Q5: What purity level does cobalt ethylene glycol dispersion have?
The dispersion is supplied at high purity (approximately 99.9 % cobalt), which helps minimize impurities that could interfere with material behavior in electrochemical, catalytic, or research applications.
