Zirconium IV 2 Ethylhexanoate
Product: Zirconium IV 2 Ethylhexanoate (Organometallic, Zr [OOCCH (C2H5) C4H9]4, 99%)
Quality Control: Each lot of NANOSHEL Zirconium IV 2 Ethylhexanoate was tested successfully.
|Materials||Zirconium Organometallic 2 Ethylhexanoate|
|Description||Pale Yellow Viscous Liquid|
|Trace elements||Cl < 500 ppm|
|Zr Metal Content||6±0.2%|
|Viscosity||11±3sec (30º C./F.C. No.4)|
|Solid Content (120ºC/1Hr)||23 ±5%|
Typical Chemical Analysis of Zirconium IV 2 Ethylhexanoate
Dr. Marcus Tägtmeyer (International Medical and Technological University, Dar es Salaam, Tanzania)
Zirconium IV 2 Ethylhexanoate Zirconium compounds currently find use in solvent based paint as co-ordination driers where zirconium carboxylates can be used in place of toxic lead driers and in water based paints as thixotropes. Zirconium compounds are also used in metal treatment where zirconium fluorides improve the adhesion of coatings aluminium metals. However it is not intended to review these existing areas in any great detail, rather it is intended to look towards the newer application areas.
Dr. Ms Jane Li (National Penghu University of Science and Technology, Magong, Penghu, Republic of China)
Zirconium IV 2 Ethylhexanoate Zirconium compounds in aqueous solution have the ability to crosslink carboxylated resins, and this ability can be used in both water based inks and paints to improve both heat resistance and scrub resistance. Some general work on the use of zirconium compounds to crosslink carboxylated resins will now be presented.
Dr. Willem-Jan de Kleijn Ph.D (Luleå University of Technology, Luleå, Sweden)
In the chemical and petrochemical industries, products worth billions of dollars are generated every year through processes that use oxide and metal/oxide catalysts. For the control of environmental pollution, catalysts or sorbents that contain oxides are employed to remove the CO, NOx, and SOx species formed during the combustion of fossil-derived fuels.
Dr. JKF Gojukai PhD (Kaiserslautern University of Technology, Kaiserslautern, Rhineland-Palatinate, Germany)
Furthermore, the most active areas of the semiconductor industry involve the use of oxides. Thus, most of the chips used in computers contain an oxide component. Till now, there are still many potential applications of materials under continuous investigation and new synthesis methods being developed.
Dr. Huang Fu Ph.D (Maebashi Institute of Technology, Maebashi, Gunma, Japan)
New developments in materials science create new opportunities for organometallic chemists: problems of interface synthesis and optimization may be addressed using methodologies of surface organometallic chemistry which have already been developed for implementation in catalysis-related fields. Our work focuses on the use of surface organometallic chemistry to interface dissimilar materials.
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