Overview of Tyzor ® DEA Titanate Chelate:
Tyzor ® DEA titanate chelate is a complex of diethanolamine titanium containing 40-45% active ingredient in an alcohol solvent.
Performance parameters of Tyzor ® DEA titanate chelate:
performance | Typical values |
Titanium dioxide content | ca. 19.6% |
appearance | light yellow |
solvent | Isopropanol |
Specific gravity (25 ° C) | 1.02/cm³ |
boiling point | 82℃ |
lightning | 23℃ |
Solubility in solvents | Easy to mix with most organic solvents |
Solubility in water | Easy to mix |
Functional properties of Tyzor ® DEA titanate chelate:
In processes such as esterification, ester exchange reactions, condensation, addition, etc., Tyzor ® DEA titanate chelates act as Lewis Acid catalyst. Tyzor ® DEA titanate chelate can affect adhesion promotion and polymer crosslinking, or serve as an adhesive or coating The layer forms a polymeric titanium dioxide coating.
Tyzor ® DEA Titanate ChelatePackaging specifications:
packing | Net weight |
Application of Tyzor ® DEA Titanate Chelate:
·Reaction catalyst:
Tyzor ® DEA titanate chelate is a compound used in esterification, ester exchange, and condensation reactions An effective catalyst for addition reactions. Due to its good compatibility with water by-products, it is particularly suitable for direct use in esterification processes. The effect is to moderate the reaction rate, achieve high yield, be easy to knead, have low toxicity, and be a catalyst with low concentration.
·Paint:
Available Tyzor ® DEA Titanate Chelates for Processing Glass, Metals, Fillers, and Pigments To increase surface hardness, adhesion promotion, scratch resistance, coloring effect, heat and light reflection, rainbow color, and corrosion resistance.
Guidelines for the Use of Tyzor ® DEA Titanate Chelate:
Tyzor ® DEA titanate chelates are typically formulated with other ingredients for catalytic, crosslinking, or coating applications. Titanium esters are usually added as the final ingredient to prevent unnecessary pre reactions with water or other components. The formation time of gel depends on the type of polymer, temperature, pH value, salt water concentration and titanic acid concentration.
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