Nanotechnology gives us the ability to develop and alter materials at the molecular level. Manufacturing at the atomic level allows chemical engineers to alter the physical characteristics of parent material atom-by-atom to create entirely new substances. Companies are currently manufacturing revolutionary materials like nano-metals, nano-polymers, nano-glass and nano-ceramic. Nanotechnology is used to create totally new structures and components with significantly improved physical, chemical and biological properties due to their nanometer sizes.

All products are produced from some type of raw material. These raw materials are composed of particles which are usually invisible to the naked eye. Conventional materials have particles with sizes varying from 100's of a micron (a millionth or 10-6 of a meter) to millimeters (a thousandth or 10-3 of a meter). A nanomaterial has a particle size of 1 to 100 nanometers, exhibiting unusual physical and electronic properties.

Benefits of Nanomaterials
Some benefits that nanomaterials can bring include exceptional lightness, strength, hardness, durability, wear resistance, high chemical activity and even self-cleaning characteristics. Therefore, materials built from nano-sized particles generate tremendously useful properties for us to explore. Nano-meter sized molecules of Xyvere penetrate into the smallest inclusions in painted metal, fiberglass, wood and ceramic, protecting them from harsh elements. Nanomaterials within Xyvere exhibit uncommon characteristics like superior scratch resistance, clarity, UV protection, hydrophobicity and adhesion. Xyvere is made from a revolutionary nanostructured polymer, which is a three dimensional molecular network wrapped with various nanomaterials and other inorganic ingredients to extend the life of important automotive paint, aviation, industrial and marine paint surfaces by producing a ultra-scratch resistant and self-cleaning effect.

Why Xyvere is the best choice?
Xyvere was specifically designed to extend the life of important surfaces. Our revolutionary nanotechnology based nanocomposite is a three dimensional molecular network wrapped with various nanomaterials, which dramatically improve scratch resistance, hydrophobicity and adhesion. These three dimensional molecular networks create multiple reaction sites, which create a covalent bond to various substrates. Xyvere reduces the time it takes to clean and maintain painted finishes from 50-60% by creating a self-cleaning paint surface. Xyvere produces a crystal clear, extreme scratch resistant and self-cleaning paint surface. Dirt & Grime simply bead-off a fully cured Xyvere surface with running water.

Xyvere's Self-Cleaning Action is produced with photo-catalytic, hydrophobic and surface release properties that all converge to produce a surface that is 50-60% easier to clean and maintain. The following three attributes are what define Xyvere Nanocoatings as Self-Cleaning:

  • Xyvere possesses self-cleaning photo-catalytic properties from nanoparticles of Zinc Oxide, which are energized by UV rays from the sun (even on cloudy days) to help loosen organic dirt particles from the surface. Xyvere also provides UV protection to prevent substrate deterioration.

  • Xyvere possesses self-cleaning release properties, which help prevent dirt, grime and other surface contaminants from attaching to a fully cured Xyvere surface. Dirt, Grime, Paint and even Ink wipe off easily. Xyvere can easily be recoated (sanding required using a 1500-2000 grit sandpaper).

  • Xyvere possesses self-cleaning hydrophobic properties, which causes water droplets to bead off of a fully cured surface picking up dirt and other surface contaminant along the way. This Self-cleaning Action helps to clean and maintain important surfaces and to accelerate drying leaving the surface with minimal spotting.

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