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In the field of organosilicon chemistry, hydrosilylation reactions are key to synthesizing functional silicone oils. As a highly reactive intermediate, Terminal Hydrogen Silicone Oil IOTA 616 provides an efficient and reliable solution for hydrosilylation reactions.
High Reactivity:
With active Si-H bonds in its molecular structure, IOTA 616 exhibits higher reactivity than conventional hydrogen-containing silicone oils, enabling efficient participation in hydrosilylation reactions to synthesize various reactive linear modified silicone oils.
Versatility:
IOTA 616 is not only a fundamental raw material for hydrosilylation but also a key intermediate for block copolymerization, widely used in the synthesis of functional silicone oils.
Enhanced Product Performance:
As a chain extender in addition-cure liquid silicone rubber, IOTA 616 significantly improves elongation at break, increases toughness, and reduces hardness, meeting the demands of high-end applications.
Functional Silicone Oil Synthesis: Used to produce various reactive linear modified silicone oils.
Block Copolymerization: Serves as a key intermediate for synthesizing high-performance block silicone oils.
Liquid Silicone Rubber: Acts as a chain extender to enhance the mechanical properties of silicone rubber.
Conclusion:
IOTA 616 is not just an "efficient intermediate" for hydrosilylation but also a driving force behind advancements in the organosilicon industry. Choosing IOTA 616 means choosing efficiency, versatility, and high performance!