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Chemical Name:3-Aminopropyl-methyl-diethoxysilane
We offer a wide range of custom synthesis and production services for pharmaceutical intermediates, reference compounds and new reagents for pharmaceutical companies, pharmaceutical biotech companies, universities and research institutions.With strong technical accumulation and innovative research and development capabilities, he is good at various types of chemical reactions such as hydrogenation, nitration, Suzuki coupling, cyanation, diazotization, bromination, wittig reaction, Grignard reaction, redox reaction and ultra-low temperature reaction.We are a market leader in the development and manufacturing of high performance specialty chemicals. We foster an ambitious culture that focuses on open innovation for new chemical products and business growth.By following our guiding principles of Samples, Quotes, Literature, and Innovation, we are able to make continual process improvements for customers.Repackaging capabilities to fit customer specific requirements.
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CAS.NO:3179-76-8
Synonyms:3-(Diethoxy(methyl)silyl)propan-1-amine; 3-Aminopropyl(diethoxy)methylsilane;
Molecular Formula:C8H21NO2Si
Molecular Weight:191.34300
Physical and Chemical Properties:
Density:0.916;
Boiling point:85-88oC;
Flash point:68oC;
Index of Refraction:1.4272;
Specification:
Appearance:Colorless transparent liquid
Purity(GC):≥98.0%
Packing:180 kg/drum, can also be packaged according to customer requirements
Storage:Store in a cool, ventilated place
Application:It is an important or even essential constituent in many applications. It is particularly important as an additive to cold-curing phenolic and furan foundry resins to improve the flexural strength of sand/resin elements with very long shelf life of the resins.
Further examples are: Glass fiber/glass fabric composites: as size constituent or finish Glass and metal primers Abrasives: as additive to phenolic resin binders Sealants and adhesives: as primer or additive and for chemical modification Mineral-filled composites: for pretreatment of filers and pigments or as additive Synthesis of functional silicones The most important efects which can be achieved using it are improvements in product properties, such as: Adhesion; Mechanical properties, for example flexural strength, tensile strength, impact strength and modulus of elasticity; Moisture and corrosion resistance; Electrical properties, for example dielectric constant, volume resistivity; And improvements in processing properties, such as: Better filler dispersion: Rheological behavior: reduction in viscosity, Newtonian behaviour; Higher degree of filing.