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IOTA PHPS: Nano Hydrophilic Self-Cleaning Coating – Low-Temperature Ceramic Conversion for a New Era of Surface Cleanliness

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In architecture, home environments, and precision manufacturing, are you still troubled by water stains on glass curtains, stubborn dirt on ceramic sanitary ware, or fingerprint smudges on optical devices? Traditional cleaning is labor-intensive, while ordinary coatings are either hydrophobic (leaving streaks) or lack hardness. Now, a surface solution derived from inorganic nanotechnology is ready: Perhydropolysilazane IOTA PHPS. More than a coating, it is an "intelligent precursor" that transforms into pure silicon dioxide (SiO₂) at low temperatures on substrate surfaces, delivering lasting super-hydrophilic, ultra-hard, and stain-resistant transparent protection, making surface maintenance simple and enduring.

The卓越性能 of IOTA PHPS stems from its unique inorganic perhydropolysilazane structure. The material offers excellent solubility, facilitating storage, transport, and formulation for application. Its curing process is rapid and offers multiple methods, easily forming an initial coating through means like heat treatment. The core breakthrough lies in its low-temperature ceramification capability: under relatively mild heating conditions, the coating transforms into a dense, chemically stable amorphous silica layer. This protective layer, sharing the essence of glass, not only grants the surface glass-like ultra-high hardness and wear resistance but also, through precise nano-structural tuning, achieves a lasting super-hydrophilic effect. Water instantly spreads uniformly on the coated surface, forming a thin film that effortlessly lifts and carries away dust and oils, resulting in outstanding self-cleaning and anti-fouling performance, effectively preventing water spots and limescale buildup.

The product is application-friendly, demonstrating excellent adhesion to metals, ceramics, glass, and various polymer materials, and is suitable for spraying, dip-coating, spin-coating, and other processes. The resulting coating is highly transparent, perfectly preserving the substrate's original appearance and optical properties.

From super-hydrophilic self-cleaning glass for high-end architecture and anti-dust, transmittance-enhancing films for solar panels, to easy-clean, antimicrobial surfaces for medical devices and kitchenware, and anti-fingerprint protection for precision optical lenses and displays, IOTA PHPS provides innovative, long-lasting, stable, and eco-friendly solutions. It redefines the logic of surface protection, shifting from "resisting contamination" to "active cleaning."

Choosing IOTA PHPS means adopting a future-oriented strategy that empowers surfaces with nano-ceramic technology and liberates manpower with smart materials. It makes lasting cleanliness and minimal maintenance achievable. Implement IOTA PHPS today to bestow your critical surfaces with an invisible, intelligent "skin" that "breathes" and "self-cleans," securing a significant advantage in the competition to enhance product value and user experience.


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

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