Home    Company News     Precision Engineered, Multi-Dimensional Evolution – IOTA 9120 Organoborosilazane: The Intelligent Precursor Defining Next-Generation SiBCN Advanced Ceramics

Precision Engineered, Multi-Dimensional Evolution – IOTA 9120 Organoborosilazane: The Intelligent Precursor Defining Next-Generation SiBCN Advanced Ceramics

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As materials science leaps toward the designability of microstructure and properties, we proudly introduce the revolutionary and precisely controllable Organoborosilazane (Ceramizable Precursor Polymer) IOTA 9120. It is not only an exceptional thermosetting resin but also an intelligent, programmable "material gene bank" leading to ultra-high-performance SiBCN ceramics, offering unprecedented solutions for your most extreme environment applications.

IOTA 9120 is a liquid polymer composed of repeating Si-N and Si-N-B units. Its core appeal lies in its dual identity and controllable transformation. As a resin, it offers advantages of low viscosity and short curing time, coupled with unprecedented curing flexibility: it can be thermally cross-linked in air or inert atmosphere at 120-180°C, or gently cured via platinum-catalyzed hydrosilylation at 80-100°C (requiring only 2-5 hours). This makes it perfectly suited for processes ranging from precision impregnation to complex molding. Its excellent adhesion to metals, ceramics, graphite, and more, makes it an ideal matrix for composite materials.

Its ultimate value, however, lies in its designable ceramic future. IOTA 9120 boasts a high ceramic yield, efficiently converting into SiBCN ceramic with excellent thermal stability under mild pyrolysis. More groundbreaking is that you can actively "program" the final ceramic's composition and properties by selecting the pyrolysis atmosphere: obtain SiC and Si₃N₄ in nitrogen/argon; primarily form Si₃N₄ in ammonia; or create SiBOCN in air. Combined with the strategic use of fillers, you can further tailor the ceramic's microstructure and final properties, achieving precise control from amorphous to crystalline (>1600°C) states.

The application prospects are boundless: Whether for ultra-high-temperature coatings in aerospace engines, matrices and binders for next-generation Ceramic Matrix Composites (CMCs), high-performance ceramic components in semiconductors, or precision devices demanding extreme thermal/chemical stability, IOTA 9120 provides a complete pathway from liquid processing convenience to ceramic performance excellence.

To unlock its full potential, please note: IOTA 9120 should be diluted with dry solvents and strictly protected from exposure to water, alcohols, acids, bases, and other protic substances.

Choosing IOTA 9120 means embracing designability, high performance, and processing freedom in materials. It transforms complex ceramic science into a clear set of process choices, empowering you to effortlessly master every evolution from molecular structure to macroscopic performance, opening a new dimension in advanced manufacturing for the future.
       Room termperature curing polysilazane, pls check IOTA 9150, IOTA 9150K.       
       High termperature curing polysilazane, pls check IOTA 9108IOTA 9118.

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