Innovating the electronics field with high-quality graphene.
In the field of electronics, there is a demand for improved conductivity of materials to achieve high performance and miniaturization. In particular, the selection of conductive materials, which significantly affects the reliability and functionality of electronic components, greatly influences product performance. Insufficient conductivity can lead to a decline in component performance and malfunctions. Our graphene dispersion liquid "J-GRAPHENE" uses low-defect graphene with fewer than five layers, demonstrating excellent conductivity. This contributes to material development in the electronics field. 【Application Scenarios】 - Development of high-conductivity inks - Improvement of conductivity in electronic components - Application in next-generation battery materials 【Effects of Implementation】 - Enhancement of the electrical performance of products - Contribution to miniaturization and thinness - Promotion of the development of new functional materials
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**Features** - Uses low-layer graphene with fewer than 5 layers - Few structural defects (ID/IG < 0.20) - Achieves excellent conductivity - Dispersion liquid with NMP solvent and solid concentration of 1.0 wt% - Lateral dimensions are less than 3.0 μm **Our Strengths** We possess nanomilling technology using an ultra-high-pressure homogenizer. Applying this technology, we developed "J-GRAPHENE" using our unique patented method with the ultra-high-pressure homogenizer NAGS. With years of experience and collaboration with universities and research institutions both domestically and internationally, we provide high-quality graphene dispersion liquids to support our customers' new material development.
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○ Intended Uses - Electrode conductive additives - Separator coating materials - Conductive 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."





