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Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
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[Data] MgF2 nanoparticles with size control between 10 and 100 nm.

Publication of SEM and TEM observation results of 10nm-sized MgF2 nanopowders!

This document introduces MgF2 nanoparticles with size control in the range of 10 to 100 nm. It includes SEM observation results of 10 nm-sized MgF2 nanopowders, SEM observation results of secondary spherical agglomerates of 10 nm-sized MgF2 nanopowders, and TEM observation results of 10 nm-sized MgF2 nanopowders. We encourage you to read it. 【Contents (excerpt)】 ■ 10 nm-sized MgF2 nanopowders - SEM observation results of 10 nm-sized MgF2 nanopowders - SEM observation results of secondary spherical agglomerates of 10 nm-sized MgF2 nanopowders - TEM observation results of 10 nm-sized MgF2 nanopowders - Crystallite size and lattice fringes of MgF2 nanopowders observed by high-resolution TEM *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials

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Hollow silica nanoparticles "BalloonSil(R) Nano"

By dispersing in resins and coatings at the nanoscale, it is effective in enhancing various functionalities!

We would like to introduce our product, "BalloonSil® Nano." By dispersing it in resins and coatings at the nanoscale, it effectively enhances various functionalities, enabling a wide range of applications such as high-performance insulation materials, lightweight materials, and special coatings. In the application to insulating glass, using nanosized hollow particles overcomes all challenges such as "difficulty in achieving sufficient insulation" and "lack of hardness, transparency, and weather resistance." 【Specifications (excerpt)】 <40nm Hollow Particles> ■Outer diameter nm: 40 ■Inner diameter nm: 30 ■Shell thickness nm: 5 ■Porosity %: 40 *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials

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"Polystyrene Nanoparticles" ★Free reference materials!

For the production of structural colors and 3D porous molds! "Easily arranged," "difficult to aggregate," "free of impurities" - 'Polystyrene nanoparticle' dispersion.

Our developed "Polystyrene Nanoparticles" achieve a uniform particle size without classification. They can easily create a regular array structure. Furthermore, they are characterized by a strong negative charge on the surface, making them difficult to aggregate in water. Since they are synthesized soap-free, there are no impurities such as surfactants. They are ideal not only for structural colors but also for nanosphere lithography and molds for three-dimensional porous bodies. Expected applications for three-dimensional porous bodies include electrodes for secondary batteries and capacitors, photocatalysts, dye-sensitized solar cells, photonic crystals, and sensors. For inquiries regarding nanoparticles, please feel free to consult us. 【Features】 ■ Spherical shape with a sharp particle size distribution ■ Lineup from 50 to 300 nm ■ Easy to arrange (negative charge: sulfonic acid group for employment) ■ Free of impurities (surfactant-free manufacturing) *For more details, please refer to the catalog or feel free to contact us.

  • Other polymer materials

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[Information] Introduction of Infrared Absorbing ITO Nanoparticles

Photos of the "produced ITO nanoparticle dispersion" and materials featuring "the characteristics of our ITO nanoparticles," etc.

This document introduces "Infrared Absorbing ITO Nanoparticles." Our manufacturing method is a slight improvement on the conventional co-precipitation method, allowing for cost-effective production. In small quantities, the price is 200,000 yen per kg for 1 kg to 100 kg, but at the ton level, it is possible to reduce the price to below 150,000 yen per kg. Please take a moment to read. [Contents (excerpt)] ■ Establishment of a low-temperature synthesis method for ITO nanoparticles with a minimum size of 10 nm ■ Manufacturing process ■ Dispersion of the produced ITO nanoparticles ■ Features of our ITO nanoparticles ■ Example 1 of ITO nanoparticles *For more details, please refer to the PDF document or feel free to contact us.

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  • Chemicals
  • Other consumables

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High-resistance conductive tin oxide nanoparticles

"Photos of the XRD of the synthesized tin oxide nanoparticles" and "Photos of the SEM of the synthesized tin oxide nanoparticles"!

This document introduces "High Resistance Conductive Tin Oxide Nanoparticles." It includes a table explaining "Representative Sample Descriptions" and features photographs of "XRD of the fabricated tin oxide nanoparticles" and "SEM of the fabricated tin oxide nanoparticles." Please take a moment to read it. 【Contents (Excerpt)】 ■ Description of Representative Samples ■ XRD of fabricated tin oxide nanoparticles 10–20nm ■ XRD of fabricated tin oxide nanoparticles 30–50nm Lot2 ■ XRD of fabricated tin oxide nanoparticles 50–100nm *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials

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Silver nanoparticles 'LM1'

The particle shape is flake shape + polyhedron, and the specific surface area is 0.5 to 1.5 m²/g! Silver powder specialized for adhesion!

We would like to introduce our silver nanoparticles 'LM1'. The surface treatment is coated with hexanoic acid, lauric acid, palmitic acid, stearic acid, and oleic acid. The particle size ranges from 0.7 to 1.3 μm, with a thickness of ≦100 nm and a tap density of 2.0 to 4.0 g/cm³. 【Characteristics (partial)】 ■ Particle shape: Flake shape + polyhedral ■ Particle size (μm): 0.7 to 1.3 ■ Thickness (nm): ≦100 ■ Specific surface area (m²/g): 0.5 to 1.5 ■ Tap density (g/cm³): 2.0 to 4.0 * You can download the English version of the catalog. * For more details, please refer to the PDF document or feel free to contact us.

  • Other metal materials

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Silver nanoparticles 'M27'

Surface coating with hexanoic acid, lauric acid, palmitic acid, stearic acid, and oleic acid!

We would like to introduce our silver nanoparticles 'M27'. The particle shape is flake, with a particle size of 2.0 to 7.0 μm and a thickness of 60 to 100 nm. The specific surface area is 0.5 to 1.5 m²/g, and the tapped density is 1.5 to 3.0 g/cm³. Additionally, the electrical resistivity is 3.8 μΩ·cm (after sintering). 【Characteristics (partial)】 ■ Particle shape: Flake ■ Particle size (μm): 2.0 to 7.0 ■ Thickness (nm): 60 to 100 ■ Specific surface area (m²/g): 0.5 to 1.5 ■ Tapped density (g/cm³): 1.5 to 3.0 *You can download the English version of the catalog. *For more details, please refer to the PDF materials or feel free to contact us.

  • Other metal materials

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Silver nanoparticles "M612"

The dispersible solvents include water, EtOH, DPM, C, EG, CA, TP, BC, TPM, and BCA!

We would like to introduce our silver nanoparticles 'M612' that we handle. The particle shape is flake, and the particle size ranges from 6.0 to 12.0 μm, with a thickness of 60 to 100 nm. The surface treatment consists of surface coating with hexanoic acid, lauric acid, palmitic acid, stearic acid, and oleic acid. 【Characteristics (partial)】 ■ Particle shape: Flake ■ Particle size (μm): 6.0 to 12.0 ■ Thickness (nm): 60 to 100 ■ Specific surface area (m²/g): 0.5 to 1.5 ■ Tapped density (g/cm³): 1.5 to 3.0 * You can download the English version of the catalog. * For more details, please refer to the PDF materials or feel free to contact us.

  • Other metal materials

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Features of the spherical resin particles "Lumisis Marker"

Various thermoplastic resins are available as base materials! They show strong tendencies depending on the type.

"LumisisMarker" is a spherical resin particle containing our ultraviolet-excited phosphor "Lumisis." The ultraviolet-excited phosphor Lumisis is excited by ultraviolet wavelengths and shows a strong tendency to emit various colors such as red, blue, and green, depending on the type. Various thermoplastic resins such as acrylic, nylon, polystyrene, and ABS can be used as the base material. 【Features】 ■ The excitation wavelength and fluorescence wavelength are the same as Lumisis's excitation wavelength. ■ Particle size can be controlled from the nanometer order to the 100μm order. ■ The proportion of Lumisis contained can be controlled. ■ The specific gravity is almost the same as that of the base resin. *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials

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Fast CPC(MODEL 3650)

Achieving a response time of 100ms in nanoparticle measurement! Compact and robust, suitable for field measurements.

The "Fast CPC (MODEL 3650)" is an ideal device that can measure rapidly changing aerosol concentrations and electrical mobility particle size distributions with a fast response time. In addition to the conventional method of condensing particles in supersaturated alcohol vapor, it prevents the diffusion of vapor through laminar flow in the condenser section, allowing for the growth of micron-sized droplets nucleated by nanoparticles as small as 1.9 nm. These droplets are then detected and counted using light scattering. 【Features】 - Compact and robust, suitable for field measurements - Resistant to vibrations and pressure changes, enabling mobile measurements - Built-in flow meter and pump *For more details, please refer to the PDF document or feel free to contact us.

  • Particle Counter

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Diamond particles "Nano Amando"

Carbon nanoparticles with an average diameter of 2.6±0.5 nm.

"Nanoamond" is a diamond particle that has a size in the single-digit nanometer range and is expected to become an excellent general-purpose material. Currently, we are actively exploring its applications, and promising uses backed by patents and papers include high-speed ultra-precision polishing, lubricants, composition reinforcement components, nano-carbon raw materials, drug carriers, and composite films (LBL method), among others, with expectations for applications in a wide range of fields. Considering the diversity of applications discovered so far, it is believed that many more uses will be discovered and developed in the future. [Product Forms] ■ Colloidal solution (medium: water, DMSO, EG, PG, PAO, etc.) ■ Soft hydrogel ■ Hard hydrogel ■ Aerosolized anhydrous low-agglomeration fine powder *For more details, please download the PDF or feel free to contact us.

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Properties of Gallium Oxide Nanoparticles

The range of size control is 10 to 2000 nm! It is a manufacturing method that synthesizes particles through direct oxidation.

The lack of sufficient breakdown voltage in aluminum oxide, titanium oxide, and silicon oxide is a problem. Our manufacturing method is a completely impurity-free process that uses 5N metal gallium to directly oxidize and synthesize particles. The developed gallium oxide nanoparticles have a diameter of 20nm and a length of 20 to 50nm. The method for synthesizing them in large quantities at this size is a new technology developed by our company. 【Features】 ■ Completely impurity-free process ■ Manufacturing method that directly oxidizes particles using 5N metal gallium ■ Nanoparticles with a diameter of 20nm and a length of 20 to 50nm ■ Size control range from 10 to 2000nm ■ Highly chemically stable in terms of alkali and acid resistance *For more details, please refer to the PDF document or feel free to contact us.

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[Data] SAC composition of the world's smallest class size solder nanoparticles.

TEM-EDS! Composition analysis in a 200nm angular area shows that alloy nanoparticles with compositions close to the target have been produced.

This document introduces the "Solder Nano Particle SAC Composition of the World's Smallest Class Size." In the composition analysis of a 200nm square area, alloy nanoparticles with a composition close to the target have been produced. As for the electron diffraction analysis using TEM, it consists of a mixture of crystalline powders with β-Sn structure and Ag3Sn structure, suggesting that phase separation may have occurred during the reaction process. 【Contents】 ■ Introduction of solder composition Sn-Ag-Cu alloy nanoparticles ■ Lattice stripes of 10nm size particles ■ Composition analysis results of solder nanoparticles ■ Composition analysis area ■ EDX analysis Area 1 *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials

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Introduction of tungsten oxide and molybdenum oxide nanoparticles.

Tungsten oxide and molybdenum oxide are used in various fields, and here is an example of how we control their size and shape.

The size can be controlled within a range of 20nm to 500nm. Additionally, various elements can be doped into the oxide. The shape can also be controlled to some extent. Regarding tungsten oxide nanoparticles, we synthesize particles in granular, cubic, needle-like, and plate-like shapes.

  • Chemicals

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Samples will be given to 10 people: Zirconia Nanoparticles 'Zirconeo'

Ideal for high refractive index materials and molding materials! Zirconia nanoparticles developed using supercritical technology. Samples available for 10 people only!

The zirconia nanoparticles "Zirconeo Series" are nanosized zirconia particles developed using Aitec's supercritical hydrothermal synthesis method. They excel in compatibility and transparency when mixed with resins, making them suitable for high refractive index materials and molding materials. We also provide zirconia nanoparticle dispersions in powder form or as dispersions in water or organic solvents. The transparent dispersion containing zirconia particles under 10nm shows excellent compatibility with UV-curable resins. 【Features】 ■ Particle size is below 10nm ■ Main crystal structure is tetragonal ■ Specific surface area is over 200 square meters/g ■ Samples can be provided in either powder or dispersion form ~ Free sample giveaway ongoing! ~ * Customers wishing to receive zirconia samples should download the catalog, fill out the questionnaire, and return it via fax. * This offer is on a first-come, first-served basis and will end once we reach 10 participants. * For more details, please download the catalog or contact us directly.

  • Other polymer materials
  • Other optical parts

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