Suitable for CNT dispersion for LIB! Ultra-high pressure homogenizer NAGS series.
Without breaking, uniformly. Optimizing the conductive network of CNTs. We propose a suitable dispersion device for CNT dispersion. Please try it out starting with contract testing!
As the performance of lithium-ion batteries (LIB) continues to improve, the adoption of carbon nanotubes (CNT) as a conductive additive is expanding. While CNT can form an excellent conductive network with a small amount, its performance greatly depends on the "dispersion state." Our NAGS series assists in shaping the optimal conductive network of CNT for LIBs through three forces: shear, cavitation, and collision (between materials) by employing a unique H-type nozzle! 《Do you have any of the following challenges?》 - Want to improve the conductivity of CNT slurry - Want to disperse it as much as possible without cutting - Want to conduct research and development that can directly lead to future mass processing The NAGS series (switching pressurized tank method) will solve these issues. ◆ Achieves a suitable dispersion state with minimal damage through a uniquely designed H-type nozzle ◆ Capable of processing high-viscosity CNT paste (dispersion liquid) with increased concentration ◆ Eliminates the hassle of sample replacement for each pass or tank switching ◆ Unified H-type nozzle design from small to large machines, making scale-up easy Please try it out first with our contract testing.
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**Features of the NAGS Series** - Demonstrates damage-free and strong dispersion power with a uniquely developed H-type nozzle - Capable of handling a minimum of 20ml to a maximum of several hundred liters - Suitable for high concentration and high viscosity samples - Achieves high-pressure processing up to 250MPa - Contamination-free processing suitable for high-purity samples - Compatible with organic solvents (most organic solvents such as acetone, toluene, and NMP can be used)
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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."





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