Home    Company News     IOTA 232: Redefining Silicone Material Performance Boundaries

IOTA 232: Redefining Silicone Material Performance Boundaries

Hits: 2352 img

1. Molecular Design Philosophy
The precision combination of trisiloxane backbone and phenyl substituents achieves balance between rigidity and flexibility. Density 0.994g/cm³ enables water-like flow behavior in mixture systems, effectively reducing interfacial energy.

2. Process Optimization
• Catalyst Compatibility: Reduces platinum catalyst activation energy to 42kJ/mol
• Processing Window: Maintains <0.5% weight loss at temperatures above 110℃ flash point
• Storage Stability: <3% Si-H content degradation over 12-month sealed storage

3. Innovative Application Scenarios
In 5G communications, it stabilizes dielectric constant (2.8-3.2) as crosslinker for high-frequency copper-clad laminates. For new energy batteries, thermal interface materials formulated with polyether silicone achieve 1.8W/(m·K) conductivity.


1,1,5,5-Tetramethyl-3,3-diphenyl-trisiloxane IOTA 232-IOTA

Online QQ Service, Click here

QQ Service

What's App