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Organic Polyborosilazane IOTA 9120: Ushering in a New Era of Advanced Ceramic Material Preparation

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In the frontier of materials science, balancing extreme temperature resistance, superior performance, and flexible processing has always been a core challenge for R&D and application. Today, we proudly introduce Organic Polyborosilazane IOTA 9120—a groundbreaking ceramizable precursor polymer that not only redefines the pathway to high-performance ceramics but also provides you with a one-stop, controllable solution from liquid resin to top-tier temperature-resistant ceramics.

IOTA 9120 is a liquid precursor polymer composed of repeating Si-N units and innovative Si-N-B units. It perfectly combines the excellent processability of a thermosetting resin with the extraordinary transformation potential of a ceramic precursor. Its low viscosity ensures superior leveling and permeability, facilitating the processing of complex components through impregnation or coating. More notably, it offers diverse curing methods: it can be thermally cured in air or inert atmosphere at 120-180°C, or gently and rapidly cured via hydrosilylation using a platinum catalyst at 80-100°C. With a short curing time and a broad processing window, it significantly enhances production flexibility and efficiency.

The core value of IOTA 9120 lies in its precise and efficient transformation into high-performance ceramics. It undergoes pyrolysis under relatively mild conditions to yield products with a high ceramic yield, markedly reducing shrinkage and defects. The composition and properties of the final ceramic can be finely tuned by the pyrolysis atmosphere (nitrogen/argon, ammonia, or air), yielding primarily SiC/Si₃N₄, Si₃N₄, or SiBOCN ceramics, respectively, to meet diverse application needs in extreme environments (such as ultra-high temperatures, oxidation resistance, and corrosion resistance). It demonstrates excellent adhesion to substrates like metals, ceramics, and graphite, making it an ideal choice for coatings, adhesives, or composite materials.

From thermal protection for aerospace hot-end components and corrosion-resistant chambers in the semiconductor industry to high-temperature sensors and performance braking systems in new energy fields, IOTA 9120 opens the door to design freedom and performance breakthroughs. It simplifies the complex processes of traditional ceramic manufacturing, making the fabrication of complex-shaped, high-performance SiBCN-based ceramic components more accessible than ever before.

Choosing IOTA 9120 is not just selecting a versatile material; it is embracing a future-oriented materials strategy—an intelligent link between the easy processability of polymers and the ultimate performance of advanced ceramics. It empowers you to seize the initiative in intense technological competition and define the future of your products through material innovation.


       Room termperature curing polysilazane, pls check IOTA 9150, IOTA 9150K.       
       High termperature curing polysilazane, pls check IOTA 9108IOTA 9118.

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