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By impregnating aluminum into the surface and gaps of carbon nanotubes, highly active nano-aluminum is formed. When this composite material is placed in water or hot water, the highly active nano-aluminum reacts with the water to produce hydrogen, achieving a hydrogen generation rate close to the theoretical value. Although it is a one-time reaction, it enables the generation of hydrogen gas on-site regardless of location and allows for the effective reuse of waste aluminum materials.
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Free membership registrationThe "MPNP-160 BASIC" is a device that easily generates metal nanoparticles by evaporating various metal materials in an inert gas environment. By adjusting the pressure and type of gas, the particle size of the nanoparticles can be controlled. It is also possible to produce oxide nanoparticles. Furthermore, by heating the collection substrate, nanoparticles can be grown on the substrate. Please feel free to use it as a testing and research device. 【Features】 ■ Easily generates metal nanoparticles ■ Controls the particle size of nanoparticles *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationTo the factory site, quality control, and research and development.
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Free membership registration"Carbon nanotubes" are directly deposited on the substrate in an oriented manner. To suit various applications, we offer a range of options including "long carbon nanotubes," which are elongated with a high aspect ratio and crystallinity, providing crosslinking, conductivity, and reinforcement effects; "thin carbon nanotubes," characterized by a large specific surface area and high crystallinity; and "thick carbon nanotubes," which can also be used as additives for the anode material in lithium-ion batteries. [Features] - Direct deposition on the substrate - A lineup available for selection based on application - Customization is also possible *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe "MPCNT-160 BASIC" is a simplified carbon nanotube synthesis device that uses ethanol as a carbon source. It is capable of synthesizing vertically aligned carbon nanotubes on various substrates. It allows for the direct growth of vertically aligned CNTs on silicon, quartz, titanium, stainless steel, copper, and ceramics, enabling the production of CNTs without the use of reducing gases. As an option, hydrocarbon gases can also be introduced. Please feel free to use it as a testing and research device. 【Features】 ■ Simplified design ■ Desktop model ■ Capable of producing CNTs without using reducing gases *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThis product is a device that synthesizes wood biomass, waste paper, and waste plastics into highly usable activated carbon. It enables rapid decomposition of biomass and decomposition under vacuum, continuously performing carbonization and steam activation. Additionally, it simultaneously generates high surface area activated carbon and high-calorie gas, allowing for the optional collection of decomposition gas. 【Features】 ■ Capable of rapid decomposition and decomposition under vacuum ■ Continuously performs carbonization and steam activation ■ Optional collection of decomposition gas available *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationSimple Carbon Nanotube Synthesis Device Using Ethanol as the Carbon Source ◆Features◆ - Carbon nanotubes can be deposited in a vertical orientation on various substrates (silicon, quartz, titanium, stainless steel, ceramics, etc.) - The entire process takes about 20 minutes ◆Options - SUS chamber for CVD material introduction (liquid fuel introduction port, hydrocarbon gas introduction port, reducing gas introduction port, spare port) - Additional power supply set (power supply, heater unit) - Radiation thermometer - Various safety mechanisms
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Free membership registrationOf course, organic liquid raw materials, as well as hydrocarbon raw gases such as acetylene gas and methane gas, are standardly equipped with introduction ports for H2 reduction gas, making it easy to synthesize various types of CNTs. Additionally, rapid cooling of the substrate heater is possible, allowing for easy film formation of graphene membranes.
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Free membership registrationOptionally, by adding introduction units for ammonia gas and other CVD gases, as well as introduction units for solid or liquid precursors for CVD reactions, it is also possible to perform nitriding treatment and film formation of chalcogenide layered materials.
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Free membership registrationThis is a tubular furnace thermal CVD device for synthesizing graphene films. It is equipped with a slide movement mechanism for the furnace, allowing for rapid heating and cooling of samples. An optional motor-driven automatic slide function can also be added. Additionally, by adding a turbo vacuum pump as an option, even higher quality graphene can be deposited.
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Free membership registrationA device that enables the CVD process by rotating the core tube and stirring the powder sample. The stirring action allows for uniform CVD treatment.
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Free membership registrationThis is a continuous CVD processing device with a continuous feed/recovery mechanism for powder samples, enabled by the inclination and rotation mechanism of the reaction tube. It allows for mass production of carbon coating on powder sample surfaces, heat treatment, CVD processing, doping treatment, and more. It is suitable for the large-scale production of large-area oriented CNT substrates and high-yield powder-type CNTs.
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Free membership registrationIt is a vacuum deposition device that forms various metal thin films on a substrate-like sample surface, with the film thickness being accurately controlled. It has very convenient features for investigating thickness dependence and evaporation rate dependence.
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Free membership registrationIt is possible to transport samples between the glove box and the vacuum deposition device without exposing them to the atmosphere. Features: - Sample holder with a vacuum chamber structure - Compact size, can be transported inside the glove box - Capable of vacuum evacuation within the glove box - The chamber lid of the vacuum deposition device automatically opens - Optionally, a sample holder rotation mechanism can be added
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Free membership registrationBy enabling evaporation from the source downwards, it has made it possible to deposit on non-fixable particulate samples.
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Free membership registrationDepending on the type of materials and process conditions, nanoparticles of generally 10-20 nm are produced.
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Free membership registrationWe synthesize high-performance activated carbon from wood biomass, waste paper, and waste plastics. ◆Features◆ - Rapid decomposition of biomass and decomposition under vacuum are possible. - Carbonization and steam activation are carried out continuously. - High surface area activated carbon and high-calorie gas are generated simultaneously, allowing for the optional collection of decomposition gas. ◆Options (Radiation thermometer, decomposition gas recovery mechanism, SUS chamber, gas recovery port)
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Free membership registrationWe offer samples of vertically aligned CNT substrates (for a fee) and can also prototype samples that grow vertically aligned CNTs on your desired substrate. We can grow on various three-dimensional shapes, not just flat substrates, but also meshes, fibers, and more. Additionally, we respond to various requests such as selective growth of CNTs on mask patterns and the fabrication of honeycomb CNT films.
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Free membership registrationTransferring oriented CNTs onto both sides of rubber or stretchable dielectric elastomer sheets; optimal as electrodes for artificial muscles, actuators, and more.
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Free membership registrationBy attaching a CNT black body to the bottom surface of the black body furnace, a higher emissivity can be achieved, realizing the ideal black body.
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Free membership registrationWe are accepting requests for the provision of evaluation samples and prototypes at any time.
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Free membership registrationIn the as-grown state, the bundle structure is prominent, and the bulk density is very high compared to other companies' CNTs. As a result, it does not become airborne when touched and tends to clump together. It has excellent processability and moldability, making it suitable for structural processing and high-density additive applications.
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Free membership registrationSince the LLCNT is long and bundled, it is believed that when the ends of the bundle are unraveled and dispersed in the liquid, it will have a characteristic "broom-like" network in the liquid. This results in good cross-linking and fewer contact points, leading to high conductivity.
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Free membership registrationThis is a technology for synthesizing ceramic nanomaterials via template carbon nanomaterials. By heavily doping titanium into nanocarbon, it can be converted into titanium carbide alloy, and the resulting TiC has a shape almost identical to that of nanocarbon. TiC is one of the highly conductive ceramic materials, and when TiC is burned, it becomes titanium dioxide (TiO2). In this case as well, the original shape is almost maintained, resulting in the production of nano-titanium oxide. Using vertically aligned CNTs, vertically aligned titanium oxide nanotubes can be produced.
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Free membership registrationThe coil diameter is a few microns, which is why it is called a microcoil. Coils with an average diameter of less than a micron are also referred to as nanocoils, but there is no standardized terminology for them. In our company, we also refer to nanocoils as microcoils.
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Free membership registrationOur various nano-carbon manufacturing equipment and biomass carbonization devices are designed to be integrated and used as is. They are equipped with an exhaust system and can handle high-pressure CVD conditions.
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Free membership registrationThe W filament installed near the sample can be heated up to 2000°C, promoting the decomposition of various reaction gases. The active species (radicals) generated by gas decomposition accumulate on the sample surface to form a film.
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Free membership registrationThis is a mechanism for growing vertically oriented ZnO nanorods on a substrate while evaporating Zn in an oxygen-containing atmosphere.
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Free membership registrationOur company is not currently engaged in mass production of CNT resin composite materials, but we are accepting requests for prototype development, verification experiments, joint research, joint development, and technical consulting utilizing the ST effect in CNT resin composite materials.
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