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Microparticles Product List and Ranking from 22 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

Microparticles Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. 積水化成品工業 Tokyo//Chemical
  2. 根上工業 Ishikawa//Chemical
  3. null/null
  4. 4 OsakaSodaCO.,LTD. Development&Commercialization Div. Hyogo//Chemical
  5. 5 大日精化工業 Tokyo//Chemical

Microparticles Product ranking

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. True spherical polymer microparticles "Art Pearl" 根上工業
  2. [New Development] Sintering Aid OS Silver Microparticles Introduction Movie OsakaSodaCO.,LTD. Development&Commercialization Div.
  3. Polymer microparticles for adhesive and adhesive applications 積水化成品工業
  4. 4 Non-yellowing type urethane microparticles "Dynamic Beads" 大日精化工業
  5. 5 Silica spherical microparticles "C-HOSTAR KE Series"

Microparticles Product List

31~45 item / All 96 items

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Hollow nanoacrylic particles solvent dispersion transparent low refractive index and low dielectric properties.

Nano-sized organic resin particles that possess an air layer, allowing for the impartation of various properties (low refractive index, low dielectric constant, lightweight, thermal insulation).

These are organic resin microparticles with a particle diameter in the nanoscale and a hollow interior. They are provided in a solvent dispersion to achieve primary dispersion of the nanoscale particles. 〇 Features (1) The particle diameter is nanoscale, and the particle size distribution is uniform, allowing for the creation of a highly transparent low refractive index film when added to materials. (2) Being polymer microparticles, they have good compatibility with resin materials and organic solvents, resulting in excellent dispersibility. (3) Compared to inorganic hollow particles, the organic NH series has a lighter weight per particle, leading to a higher number of particles when added in the same weight, resulting in enhanced properties. (4) They have high affinity with the coating film, making it less likely for cracks to occur during film bending or punching processes. (5) The hollow structure allows for expected properties such as weight reduction, thermal insulation, and low dielectric constant in addition to lowering the refractive index. 〇 Comparison of reflections due to low-reflection films By adding to the coating film, the refractive index decreases, reducing light reflection. 〇 Comparison of coating film strength during film bending Since TP-NH is a resin composition, it has high compliance with organic binders, resulting in a coating film with excellent bend resistance.

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  • plastic

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[Technical Article] Case Studies on Solving Issues with Hollow Polymer Microparticles

Differentiating from competitors through the development of insulating film materials for semiconductors compatible with 5G! What are the customizable organic materials that achieve low dielectric properties?

5G, the next-generation mobile communication system, can transmit large volumes of data at high speeds. The development of low-dielectric semiconductors and substrates that suppress signal transmission loss in the high-frequency range is required. 【Key Issues】 We want to promote low-dielectric properties not only through resin modification but also with additives. We need additives that are compatible with the base resin and customizable. 【Solution Points】 Hollow polymer microparticles can impart low-dielectric properties due to the air layer inside the particles. They are lightweight and flexible, and customization of particle size, composition, and heat resistance is also possible. For more details, please check the link below.

  • Other polymer materials

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Enhancing the functionality of foundation! Cellulose particles 'CELLUFLOW'.

Introducing plant-derived porous cellulose particles with years of proven results as cosmetic ingredients!

"CELLUFLOW" is a porous, spherical cellulose microparticle. It has characteristics such as a smooth texture, low irritation to the skin, and water and oil absorption, making it suitable as a cosmetic ingredient. Due to its porous nature, it possesses water and oil absorption properties. By incorporating it into cosmetics such as foundation, eye color, and body powder, products with excellent texture, spreadability, and functionality can be developed. [Features] - Proven track record as a cosmetic base material for many years - Solves the microbead issue due to its plant-based material - Spherical particles of 10μm that penetrate pores and provide various functionalities - High strength both physically and chemically - Prevents makeup from breaking down for extended periods when formulated in foundation - Provides uniform application in foundation *For more details, please refer to the PDF document or feel free to contact us.

  • Company:JNC
  • Price:Other
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  • Cosmetic materials and raw materials

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Melamine resin microparticles "Hard Beads"

For light diffusion, anti-blocking, etc.! - High hardness, high refractive index spherical resin microparticles.

We would like to introduce our melamine resin microparticles, "Hard Beads." The grades available are M1 (average particle diameter 1μm), M5 (average particle diameter 5μm), and M10 (average particle diameter 10μm). Additionally, the refractive index is 1.68, and the particle hardness is 76 MPa. 【Features】 ■ High hardness ■ High refractive index ■ Refractive index: 1.68 ■ Particle hardness (MPa): 76 *For more details, please download the PDF or feel free to contact us.

  • Other polymer materials

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Non-yellowing type urethane microparticles "Dynamic Beads"

It is a cross-linked polyurethane microparticle with excellent flexibility. It contributes to stress relief in rigid resins.

Dynamic beads are urethane microparticles synthesized through a suspension polymerization reaction. They are spherical in shape with a particle diameter on the order of micrometers, and it is possible to adjust their composition, hardness, and particle size. 【Features】 - High flexibility and resilience of urethane - Sharp particle size distribution - Stress relaxation in rigid resins, low warping, and prevention of cracking during processing - Excellent dispersibility in various organic solvents - High heat resistance and humidity reliability due to cross-linked microparticles - Light diffusion properties - Matte finish

  • Other polymer materials

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Separating and removing liquid particles from gas! 'Demister'

Used for separating and removing liquid particles (mist) accompanied by droplets in gas.

It is used for the purpose of separating and removing liquid droplets (mist) accompanied by gas. The wire mesh demister is a product that achieves high collection efficiency and low pressure loss, and is used for mist removal of particle sizes ranging from 5 to 10 micrometers. 【Structure】 A mesh woven from thin metal wires is processed into a wave shape in pairs, layered alternately in multiple layers so that their ridges do not overlap. 【Materials】 Demister grid: SUS304, SUS304L, SUS316, SUS316L, SUS329J4L, Hastelloy, titanium, PVC (U-PVC, C-PVC), PVDF, FRP Demister pad: SUS304, SUS304L, SUS316, SUS316L, Hastelloy, nickel, titanium, copper, Monel, Inconel, fluororesin (ETFE, FEP, PFA), Saran wrap.

  • Other physicochemical equipment

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Light-diffusing microparticles

Microparticles with characteristics such as perfect spherical shape, precise size, and extremely narrow particle size distribution, exhibiting excellent smoothness, dispersibility, heat resistance, and weather resistance.

We offer a lineup of light-diffusing particulate products made from monodisperse organic polymer particles such as PMMA, PS, and P(MMA/S), as well as organic silicon. Product characteristics: * Uniform particle size; * Narrow particle size distribution; * Good dispersibility with no overlap or aggregation; * High light diffusion efficiency; * High purity with no contamination; * Excellent heat resistance; * Good compatibility, allowing for efficient dispersion in substrates; * High mechanical strength and height; * Good chemical stability; * Insoluble in organic solvents; * High transmittance with adjustable refractive index. Product technical specifications: Appearance: Pure white Shape: Spherical Water content: < 2% Refractive index: Organic polymer particles: 1.49 - 1.59 Organic silicon particles: 1.43 Density (25°C): Organic polymer particles: 1.05 - 1.20 g/ml Organic silicon particles: 1.32 - 1.43 g/ml Heat resistance: Organic polymer particles: 250 - 270 °C Organic silicon particles: 350 °C (weight loss 2-3%)

  • Other polymer materials

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Polymer microparticles for dispersants

It has a very narrow particle size distribution, can accurately control the thickness of the panel without damaging the substrate, and contributes to the manufacturing of products with high clarity.

These are monodisperse microparticles made from highly cross-linked polymers, available in a rich variety of specifications with fine size increments, and are widely used in fields such as LCD and PDLC. They are measured using certified measuring instruments (Beckman Coulter Counter Multisizer) and certified methods, and to ensure measurement accuracy, they are calibrated with traceable standard particles from NIST before each measurement. Since the ion content of microparticle products can directly affect the quality of liquid crystals, deionized water is used in the manufacturing and cleaning processes, and products are regularly sampled and inspected. The manufacturing process does not use substances prohibited by the European Union RoHS directive, and does not contain organic compounds or heavy metals banned by RoHS. Product characteristics: * The particle size is very uniform, with a coefficient of variation (CV) of less than 3.5%. * It has excellent monodispersity, with no overlap or aggregation. * It has high purity and contains no contaminants. * It has high mechanical strength. * It possesses excellent heat resistance, cold resistance, and chemical resistance.

  • Other polymer materials

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Composite material black micro-particles

These black microparticles are made from a composite material of polymer and silicon dioxide, featuring a pure black base color, and their blackness distinguishes them from products from other companies.

Composite black microparticles of polymer and silicon dioxide stand out in blackness compared to products from other companies. There is no concern about fading, and they can meet special customer requirements. Currently, mainstream sizes such as 4.0µm and 6.0µm are being mass-produced, and products of other sizes can also be provided as custom orders with a delivery time of about two weeks. Product characteristics: * The particle size is very uniform, with a coefficient of variation (CV) of less than 3.5%. * Excellent monodispersity, with no overlap or aggregation. * High purity, with no contaminants. * High mechanical strength. * Excellent heat resistance, cold resistance, and chemical resistance.

  • Composite Materials

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Fluorescent polystyrene microspheres

Fluorescent polystyrene microparticles are monodisperse polystyrene microparticles containing high-brightness fluorescent dyes.

Fluorescent polystyrene microparticles have fluorescent dyes embedded within the particles, effectively preventing the quenching of fluorescence and reducing the impact of environmental factors on fluorescence intensity. At the same time, the original functional groups are retained on the surface, which does not affect immunoassays, inspections, and other applications. The emission wavelength of this series of microparticles covers the entire visible light spectrum (from 460 nm to 750 nm), with the excitation wavelength being 30-40 nm lower than the emission wavelength. Fluorescent polystyrene microparticles are widely used in research fields such as side-flow chromatography, phagocytosis studies, pore size measurement, biochips, and microfluidic control. The emission spectrum of fluorescent microparticles is named based on the wavelength range of the fluorescence peak wavelength.

  • Other polymer materials

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Colored polystyrene microparticles

The internal coloring technology enriches and stabilizes the color of the microparticles, preventing dye leakage on the surface, thereby improving the covalent bonding efficiency and detection sensitivity of the microparticle surface.

Colored polystyrene microparticles based on white polystyrene microparticles are produced using a unique internal coloring technology. This internal coloring technology ensures that the color of the microparticles is rich and stable, and since the dye does not leak to the surface, it improves the efficiency of covalent bonding and detection sensitivity on the surface of the microparticles. Colored polystyrene microparticles modified with carboxyl groups bind to antigens, antibodies, and other substances through covalent bonds, and are widely used in lateral flow immunochromatography and emulsion agglutination tests. We offer a series of microparticle specifications that cover all colors of the rainbow, catering to various experimental needs in industrial and research fields.

  • Chemicals

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