particle - メーカー・企業10社の製品一覧とランキング

更新日: 集計期間:Oct 08, 2025~Nov 04, 2025
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particleのメーカー・企業ランキング

更新日: 集計期間:Oct 08, 2025~Nov 04, 2025
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  1. 住友精化 Osaka//others
  2. 希少金属材料研究所 Okayama//Building materials, supplies and fixtures manufacturers
  3. 宇部エクシモ Tokyo//others
  4. 4 トクセン工業 本社 Hyogo//Building materials, supplies and fixtures manufacturers
  5. 5 アートビーム Tokyo//others

particleの製品ランキング

更新日: 集計期間:Oct 08, 2025~Nov 04, 2025
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  1. Olefins particles "Flowbeads" <Samples available> 住友精化
  2. Silica particles "Highpresica" synthesized from high-purity silicon compounds. 宇部エクシモ
  3. High-resistance conductive tin oxide nanoparticles 希少金属材料研究所
  4. [Data] New Liquid Phase Synthesis Method for Manganese Dioxide 希少金属材料研究所
  5. 4 Rare Metal Materials Research Institute engaged in the development and manufacturing of new materials. 希少金属材料研究所

particleの製品一覧

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[Free Sample Available] Nano Platinum

The high safety of platinum nano effects is amazing: antioxidant (reduction effect), moisturizing, whitening, sterilization, antiviral effects, fatigue recovery, and relaxation effects.

High safety platinum nanoparticles ● High antibacterial power and permanent reactive oxygen species elimination ability ● No concern for metal allergies as it does not ionize ● Antiviral effects due to reduction action ● Collects airborne moisture molecules for moisturizing effect

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Rare Metal Materials Research Institute engaged in the development and manufacturing of new materials.

Creation and manufacturing of functional particles such as oxides, fluorides, and metal nanoparticles through new processes!

Our company was established with the aim of constructing various special liquid-phase reactions and using those processes to mass-produce materials that are considered difficult to supply in large quantities to the market, providing the materials needed by various domestic companies at low cost. This document includes "the advantages of particle control in the liquid phase from a fundamental perspective," as well as "contract evaluation of batteries and magnetic materials," "materials that we have started selling," and "introduction of flake metal particles such as Fe, Ni, and Cu." Please feel free to download and take a look. [Contents] ■ Purpose and features of our establishment ■ Features of our particle construction methods and introduction of specific developed particles ■ Introduction of metal powders and oxide powders produced by various synthesis methods *For more details, please refer to the PDF document or feel free to contact us.

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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 low-cost production. In small quantities, the price is 200,000 per kg for 1 kg to 100 kg, but at the ton level, it is possible to reduce the price to below 150,000 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 ■ ITO nanoparticles Example 1 *For more details, please refer to the PDF document or feel free to contact us.

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  • Safety and consumables

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[Data] MgF2 nanoparticles with size control ranging from 10 to 100 nm.

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

This document introduces MgF2 nanoparticle products with size control in the range of 10 to 100 nm. It includes SEM observation results of 10 nm size MgF2 nanopowders, SEM observation results of secondary spherical agglomerates of 10 nm size MgF2 nanopowders, and TEM observation results of 10 nm size MgF2 nanopowders. Please take a moment to read it. 【Contents (excerpt)】 ■ 10 nm size MgF2 nanopowders - SEM observation results of 10 nm size MgF2 nanopowders - SEM observation results of secondary spherical agglomerates of 10 nm size MgF2 nanopowders - TEM observation results of 10 nm size 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.

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[Information] Applications and Market Potential of Magnesium Fluoride Nanoparticles for Anti-Reflective Coatings

It introduces methods for dealing with anti-reflection, including examples of using MgF2 powder.

Anti-reflective films are applied to surfaces such as camera lenses and LCD monitors, primarily aimed at improving "light transmittance" and preventing "reflected images on LCD monitor screens." This document covers the applications and market potential of magnesium fluoride nanoparticles for anti-reflective films. It introduces methods for addressing reflections, the applications of anti-reflective films, the uses of magnesium fluoride as a low refractive index material, and examples of using MgF2 powder. 【Contents (excerpt)】 ■ What is an anti-reflective film? ■ Methods for addressing reflections ■ Principles of anti-reflective films ■ Applications of anti-reflective films ■ Applications beyond building materials *For more details, please refer to the PDF document or feel free to contact us.

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InGaZnO-based oxide nanoparticles

An example of a composite oxide consisting of oxides made from In, Ga, and Zn with the addition of Sn is presented.

This document introduces InGaZnO-based oxide nanoparticles. It includes features of our manufacturing method, conductive particles of InGaZnO-based oxides with an average particle size of 10nm, and an example of a composite oxide made by adding Sn to oxides composed of In, Ga, and Zn. We invite you to read it. 【Contents】 ■ Features of our manufacturing method ■ Conductive particles of InGaZnO-based oxides with an average particle size of 10nm ■ An example of a composite oxide made by adding Sn to oxides composed of In, Ga, and Zn ■ Colorless transparent dispersion of InGaZnO-based oxide nanoparticles (solvent: water) *For more details, please refer to the PDF document or feel free to contact us.

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[Information] Introduction of fine Cu2O particles

A document introducing photos of "Cu2O particles in aqueous dispersion," "SEM images of Cu2O particles," and "TEM images of Cu2O particles."

This document introduces fine Cu2O particles. It includes photos of "water-dispersed Cu2O particles," "SEM images of Cu2O particles," and "TEM images of Cu2O particles." Please take a moment to read it. 【Contents】 ■ Water-dispersed Cu2O particles ■ SEM images of Cu2O particles ■ TEM images of Cu2O particles *For more details, please refer to the PDF document or feel free to contact us.

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[Information] Introduction of GaN Nanoparticles

Introducing the crystal stripe patterns of GaN nanoparticles using TEM, along with easy-to-understand photographs!

This document introduces "GaN nanoparticles" handled by the Rare Metal Materials Research Institute. When the nano-dispersed liquid was dispersed on a mesh for TEM observation, the nanoparticles strongly aggregated, making clear observation difficult. However, from the lattice fringes, the particle size was approximately 10 nm, and distinct diffraction spots were observed in the electron diffraction pattern, indicating that the particles were crystalline. Please take a moment to read it. [Contents] ■ GaN nanocrystalline particles ■ Crystal stripe patterns of GaN nanoparticles observed by TEM ■ Electron diffraction patterns of GaN nanoparticles using TEM *For more details, please refer to the PDF document or feel free to contact us.

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[Information] On the Powder Properties of Ruthenium Oxide

Publication of images comparing particle shapes and sizes using SEM at magnifications of 50,000x and 100,000x.

This document introduces the "Powder Characteristics of Ruthenium Oxide." In the section "Summary of Comparisons of Various RuO2 Nanoparticles," we present tables based on SEM and TEM observation results, categorizing by powder type and our processed products A/B. Additionally, we include comparisons of particle shape and size using SEM, illustrated with photographs, so please take a moment to read through it. [Contents] ■ Summary of Comparisons of Various RuO2 Nanoparticles ■ Comparison of Particle Shape and Size Using SEM (magnification 50,000x / magnification 100,000x) ■ Differences in Particle State Based on Our Grinding Methods Compared Using SEM ■ Comparison of Particle Shape and Size from Various Companies Using TEM ■ Comparison of Particle Shape and Size Using TEM *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Catalog of Low Melting Point Silver Particles

A catalog featuring the size and characteristics of "silver submicron particles for low-temperature sintering" and "silver plate-like particles for low-temperature sintering."

This document introduces "low melting point silver particles." It includes the size, characteristics, applications, and photos of "submicron silver particles for low-temperature sintering" and "plate-shaped silver particles for low-temperature sintering." Additionally, as supplementary data, we have included SEM images of the sintering state at 300°C, so please take a look. [Contents] ■ Submicron silver particles for low-temperature sintering ■ Plate-shaped silver particles for low-temperature sintering ■ Supplementary data *For more details, please refer to the PDF document or feel free to contact us.

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Sample giveaway for 10 people: Zirconia nanoparticles 'Zirconeo'

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

The zirconia nanoparticles "Zirconeo Series" are nanosized zirconia particles developed using Aitec's supercritical hydrothermal synthesis method. They excel in compatibility with resins and transparency, 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 under 10nm ■ Main crystal structure is tetragonal ■ Specific surface area is over 200 square meters/g ■ Samples are available in both powder and dispersion forms ~ Free sample giveaway ongoing! ~ * Customers wishing for zirconia samples should download the catalog, fill out the questionnaire, and return it via fax. * This is on a first-come, first-served basis, and will end once we reach 10 requests. * For more details, please download the catalog or contact us directly.

  • Subsidiary materials
  • Medicines

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Silver nanoparticles

Silver powder that achieves world-class conductivity and low-temperature sintering characteristics.

Attention semiconductor and circuit board designers! Are you looking to increase the conductivity of your products and reduce sintering temperatures? There are silver nanoparticles that exhibit remarkable performance in semiconductors and circuit boards, which are increasingly demanding higher performance. Introducing "TOSFINE" from Toxen Industries. "TOSFINE" is produced using our unique particle manufacturing technology, which processes each particle into a flake shape, resulting in silver powder that combines the handling characteristics of flakes with the properties of nanoparticles. "TOSFINE" offers high conductivity and high mirror-like finish under dry conditions due to its highly smooth surface. 【Features】 - Achieves high conductivity and heat dissipation through single crystal flakes. - Exhibits sintering characteristics at low temperatures (120-200°C). - Realizes high conductivity even under dry conditions due to its high surface smoothness. - Has a uniform particle size distribution due to our unique manufacturing method. - We can propose particle sizes and surface treatments tailored to your applications.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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Silver nanoparticles "KM120"

Particle size is 0.15 to 0.3 μm! Introducing silver powder that achieves world-class low-temperature sinterability!

We would like to introduce our silver nanoparticles 'KM120'. The particle shape is polyhedral, with a specific surface area of 1.5 to 2.5 m²/g and a tap density of 3.0 to 4.5 g/cm³. It achieves world-class low-temperature sinterability. Additionally, the surface treatment is coated with hexanoic acid, lauric acid, palmitic acid, stearic acid, and oleic acid. 【Characteristics (partial)】 ■ Particle shape: Polyhedral ■ Particle size (μm): 0.15 to 0.3 ■ Specific surface area (m²/g): 1.5 to 2.5 ■ Tap density (g/cm³): 3.0 to 4.5 ■ TG<N2> (%): 0.1 to 0.3 *You can download the English version of the catalog. *For more details, please refer to the PDF materials or feel free to contact us.

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Adopted in various fields such as electromagnetic materials and semiconductors! Silver nanoparticles.

This is a silver powder that achieves high conductivity and low-temperature sintering characteristics. We are currently offering a document that includes a lineup overview!

Attention semiconductor and circuit board designers! Are you looking to increase the conductivity of your products or lower the sintering temperature? There are silver nanoparticles that exhibit remarkable performance in semiconductors and circuit boards, which are increasingly demanding high performance. Introducing "TOSFINE" from Toxen Industries. "TOSFINE" is produced using our unique particle manufacturing technology, which processes individual particles into flake shapes, resulting in silver powder that combines the handling characteristics of flakes with the properties of nanoparticles. "TOSFINE" features high conductivity and high mirror finish under dry conditions due to its highly smooth surface. 【Features】 - Achieves high conductivity and heat dissipation with single crystal flakes. - Exhibits sintering properties under low-temperature conditions (120-200°C). - Realizes high conductivity even under dry conditions due to high surface smoothness. - Has a uniform particle size distribution due to our unique manufacturing method. - We can propose particle sizes and surface treatments tailored to your applications.

  • Photocatalysts and various wall materials (exterior and interior walls, etc.)

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