High-quality graphene dispersion liquid that contributes to improved wear resistance.
In the field of coatings, high wear resistance is required to enhance the durability and protective performance of products. In particular, susceptibility to surface scratches and deterioration due to friction can affect product lifespan and appearance. It is important to maximize the performance of materials in response to these challenges. Our graphene dispersion "J-GRAPHENE" uses low-defect graphene with fewer than five layers, providing excellent strength and conductivity to coating materials, contributing to improved wear resistance. 【Application Scenarios】 - Various industrial paints - Protective coatings - Functional inks 【Effects of Implementation】 - Improved surface hardness - Reduced friction resistance - Extended product lifespan
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【Features】 - Uses low-layer graphene with less than 5 layers - Few structural defects (ID/IG < 0.20) - Excellent mechanical strength - Dispersed in NMP solvent at 1.0wt% - Lateral dimensions less than 3.0μm 【Our Strengths】 Since 2007, we have been developing our nanomaterial engineering business based on the technology cultivated in medical device manufacturing. We have developed a high-quality graphene dispersion "J-GRAPHENE" using our self-designed and sold ultra-high-pressure homogenizer and unique patented technology. With years of experience and collaboration with research institutions both domestically and internationally, we can also offer contract services and collaborative proposals for new material development tailored to our customers' needs.
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○ Intended Uses - Electrode conductive additives - Separator coating materials - Conductive current collector coating materials - Anti-corrosion coating materials - Conductive ink materials - Heat dissipation sheet materials - Thermal diffusion coating materials - Electromagnetic wave shielding paint
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One billionth of a meter is a nanometer. Nanotechnology exists in every aspect of the world. For example, cars. The interiors of new car doors being developed will be made of resin. This thin and strong resin is also made possible by nanotechnology. Our nano-milling technology creates nanoparticles by applying pressures that exceed those found at the bottom of the Japan Trench and speeds that surpass the speed of sound to materials. This leads to changes in new material properties. We will change the world with nanotechnology. By changing the world, we should be able to change the future. Our company will contribute to the future in the following three ways: "Contract Services," "Sales of Ultra-High Pressure Homogenizers," and "Joint Development of New Materials."





