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Microparticles Product List and Ranking from 22 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

Microparticles Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. Negami Chemical Industrial Co.,Ltd. Ishikawa//Chemical
  2. null/null
  3. 積水化成品工業 Tokyo//Chemical
  4. 4 アドマテックス 東京営業所 Tokyo//Other manufacturing
  5. 5 null/null

Microparticles Product ranking

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. True spherical polymer microparticles "Art Pearl" Negami Chemical Industrial Co.,Ltd.
  2. Silica spherical microparticles "C-HOSTAR KE Series"
  3. Heat-curing resin spherical microparticles "Epostar Series"
  4. 4 ART PEARL Hollow Urethane Microparticles Negami Chemical Industrial Co.,Ltd.
  5. 5 Functional scale-like silica filler Sun Lovely

Microparticles Product List

1~30 item / All 95 items

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Functional nano-magnetic particles 'FG beads'

Improved non-specific adsorption of proteins and high recovery rate! This is a carrier for affinity purification with excellent characteristics.

"FG beads" are beads with a diameter of approximately 0.2μm, coated with a special polymer called polyGMA (glycidyl methacrylate) around multiple magnetic materials (ferrite). The "FG beads" created using this unique technology are affinity purification carriers that possess excellent characteristics not found in conventional carriers, enabling one-step purification of target proteins. 【Features】 ■ High purity… Due to the properties of the polyGMA coating, non-specific adsorption of proteins is extremely low. ■ High recovery rate… The large surface area due to the nanosize allows for efficient binding of the target protein. ■ Organic solvent resistance… Immobilization of the ligand is possible in various organic solvents. *For more details, please request materials or view the PDF data available for download.

  • Other Protein Separation
  • Other purification and extraction
  • Other analytical and testing equipment
  • Microparticles

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Functional nano-magnetic particles "FG beads"

A carrier for affinity purification that has excellent features for immobilizing various substances such as chemical substances (drugs), proteins, and DNA. [New catalog available]

"FG beads" are beads with a diameter of approximately 0.2μm, coated with a special polymer called polyGMA (glycidyl methacrylate) around multiple magnetic materials (ferrite). This uniquely developed "FG beads" serve as an affinity purification support with excellent features not found in conventional carriers, enabling one-step purification of target proteins. 【Features】 ■ High purity… Due to the properties of the polyGMA coating, non-specific adsorption of proteins is extremely low. ■ High recovery rate… The large surface area due to their nano size allows for efficient binding of target proteins. ■ Organic solvent resistance… Immobilization of the ligand is possible in various organic solvents. *For more details, please refer to the PDF document or feel free to contact us.

  • Other Protein Separation
  • Other purification and extraction
  • Other analytical and testing equipment
  • Microparticles

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Precision instruments spray and fine particles.

With uniform droplet sizes, it is possible to control the quantity and diameter.

There are a variety of spray devices ranging from cosmetics and humidifiers to those for medicinal solutions.

  • Analytical Equipment and Devices
  • Microparticles

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Tohoku Univ. Technology: Submicron-sized particles of Fe-Ni-B and Fe-Co-B : T23-034

Suppression of eddy-current loss up to 1 GHz and realization of high frequency shift of resonance frequency

Submicron-sized magnetic particles are expected to be used as materials for high-frequency equipment operating at several GHz. Demand for submicron-sized magnetic particles is increasing amid the increasing use of 5G and the challenge of suppressing high-frequency noise. However, it is generally difficult to produce submicron-sized particles. For example, in a top-down method such as grinding raw materials, the production of micron-sized particles is limited, and even in a bottom-up method such as reducing and depositing metal ions, microparticles aggregate to form micron-sized secondary particles. In addition, it is difficult to control the composition when reducing multiple metal ions and depositing compound microparticles. The present invention relates to a method for producing submicron microparticles of Fe-Ni-B and Fe-Co-B soft magnetic materials. As shown in the upper right panel, it is characterized in that a true spherical primary particle without agglomeration is formed, and the composition can be easily controlled. The right panel shows the frequency characteristics of the complex permeability of the fine particle. Since the µ'' becomes near 0 up to 1 GHz and shows a peak in a few GHz band, the following applications can be expected.

  • others
  • Microparticles

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Regarding the application of our graphene in electric double layer capacitors.

To increase the rate of ion adsorption and desorption of the electrolyte, it is necessary to provide gaps.

Our company aims to commercialize graphene particles smaller than a few microns as industrial products worldwide. After application, they adhere quite strongly upon drying, resulting in no gaps between the layers of graphene. To enhance the adsorption and desorption speed of ions from the electrolyte, as seen in electric double-layer capacitors, it is necessary to create gaps. To use them effectively, it is suggested to add a small amount of the conductive additive MCB currently used in lithium-ion batteries. **Features of our conductive graphene particles:** - Excellent conductivity, along with superior acid resistance, alkali resistance, heat resistance, and oxidation resistance. - Considered for use as a solid lubricant. - Produced through a very cost-effective method, making it suitable for general paint pigments. - Achieved a conductivity of 2×10^-3 Ωcm. - Prototypes have reached 10^-4 Ωcm. *For more details, please refer to the PDF document or feel free to contact us.*

  • Other polymer materials
  • Microparticles

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Products of nano and micro particles that have surpassed mass production technology ☆ Low cost and short delivery time

Monodisperse microparticles with precise particle sizes and sharp distributions, ranging from 5 nm to 1000 μm, with organic, inorganic, metal coatings, and functional group attachments.

We offer a lineup of microparticles with the following characteristics, and we can also accommodate custom orders as needed. 1. Monodisperse microparticles made of organic, inorganic, and composite materials in any size within the range of 1.5 nm to 1000 μm. 2. Microparticles in various forms such as hollow, porous, core-filled, and solid. (Pore size and specific surface area can be controlled as needed within the range of 3-800 nm.) 3. Microparticles with functional groups of different types and densities bonded to their surfaces, enhancing dispersibility and improving the adsorption selectivity and affinity of the microsphere surface. 4. Microparticles whose photoelectromagnetic properties and mechanical strength are controlled by varying material compositions. 5. Mass production technology for microparticles: This leads to shorter delivery times and cost reductions through mass production techniques. They are widely used in the following fields: Liquid crystal spacers, ACF, optical films, surface finishing agents, lithium batteries, heavy metal absorption, water treatment, LEDs, solar panels, standard microparticles, HPLC analysis columns, solid-phase extraction, fluorescent microparticles, and magnetic beads. For more details, please download the catalog, view related links, or contact us.

  • Other polymer materials
  • Microparticles

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Gold-coated conductive microparticles

Designed for connection between fine electrodes, it has features such as uniform particle size, high conductivity, moderate elasticity, and strong bonding between the gold coating and resin core.

It is used for vertical conduction between glass plates of liquid crystal display panels, and is also used to create anisotropic conductive films (ACF) dispersed in adhesives, or as anisotropic conductive adhesives (ACP) for the assembly of liquid crystal displays. Product characteristics: ★ Core made of polymer microbeads, with a gold film as the outer shell. ★ A wide range of particle size options: a rich lineup with specifications in increments of 0.25 µm within the range of 3.0 to 11.0 µm. ★ Uniform particle size, with a coefficient of variation (CV) of less than 3.5%. ★ Excellent dispersibility, with no overlap or aggregation. ★ Has appropriate hardness, stable conductivity, and reliability. ★ Low impedance and high stability even in high temperature and humidity environments.

  • Other polymer materials
  • Microparticles

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Nickel-coated conductive microparticles

Nickel-coated conductive microparticles have characteristics such as uniform particle size, high conductivity, moderate elasticity, and strong bonding between the nickel coating and the resin core.

Nickel-coated conductive microparticles are designed for connections between fine electrodes and are used, for example, for vertical conduction between glass plates in liquid crystal display panels. They are also used to create anisotropic conductive films (ACF) dispersed in adhesives or as anisotropic conductive adhesives (ACP) in the assembly of liquid crystal displays. Product characteristics: ★ Core made of polymer microbeads with a nickel layer as the shell. ★ A wide range of particle size options: a rich lineup of specifications in increments of 0.25 µm within the range of 3.0 to 11.0 µm. ★ Uniform particle size with a coefficient of variation (CV) of less than 3.5%. ★ Excellent dispersibility with no overlap or aggregation. ★ Possesses appropriate hardness, stable conductivity, and reliability. ★ Low impedance and high stability even in high-temperature and high-humidity environments.

  • Other polymer materials
  • Microparticles

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Silicone microparticles for spacers

Silicon microparticles have a very sharp particle size distribution (CV < 2.5), can accurately control the thickness of liquid crystal panels, and do not damage the substrate.

Silicon microparticle products are very uniform in size regardless of particle diameter, and the coefficient of variation (CV) is controlled to be below 2.5%. They have a rich lineup and are widely used. Product characteristics: * The particle size is very uniform, with a coefficient of variation (CV) of less than 2.5%. * Excellent monodispersity, with no overlap or aggregation. * High purity with no contaminants. * High mechanical strength, K > 4500. * Excellent heat resistance, cold resistance, and chemical resistance.

  • LCD display
  • Microparticles

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Time-delayed fluorescent microparticles

Time-delayed fluorescent microparticles effectively prevent dye leakage due to internal staining while maintaining the immunoreactivity of the microparticle surface.

Time-delayed fluorescent microparticles have a long fluorescence lifetime and exhibit a longer Stokes shift, which helps avoid interference from nonspecific fluorescence by delaying the measurement time, thereby improving detection sensitivity. The particle sizes of time-delayed fluorescent microparticles are available in three types: 0.1μm, 0.2μm, and 0.3μm, making them suitable for the development of immunochromatography products.

  • Chemicals
  • Microparticles

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White polystyrene microparticles

White polystyrene microparticle products have a particle size range of 0.05 to 50 μm and have a uniform particle size.

White polystyrene microparticle products are manufactured from polystyrene using emulsion polymerization and come in various sizes, with a particle size range from 0.05 to 50 μm, and have a uniform particle size. Polystyrene microparticle products without functional groups on their surface are suitable for binding with antigens and antibodies through physical adsorption. Polystyrene microparticle products modified with carboxyl groups can bind to ligands such as antigens/semi-antigens, antibodies, peptides, and nucleic acid probes through covalent bonds, making them ideal materials for immunodiagnosis and biological separation. Custom manufacturing with various particle sizes and functional groups is also possible, catering to diverse needs.

  • Chemicals
  • Microparticles

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Flow cytometric absolute counting of microparticles

Flow cytometric absolute counting of microparticles helps measure the absolute number of cells in a sample.

The flow absolute counting microparticle products are fluorescently stained microparticles or unstained microparticles with a particle size, provided as a suspension containing 1×10^6 microparticles per 1 mL. The microparticles are accurately counted using an electrical resistance particle counter and have a highly uniform particle size distribution and fluorescence intensity distribution (CV < 5%). Unstained absolute counting microparticles determine the absolute number of cells in the sample through scattered light signals. Internally stained fluorescent microparticles generate signals in common fluorescent channels such as FITC, PE, Cy5, APC, and Cy7, distinguishing them from the population of detected cells, and evaluating the ratio of detected fluorescent counting microparticles to cells to calculate the cell count. The product specifications for rainbow fluorescent microparticles with RB generate signals in all fluorescent channels and are suitable for cell counting in multicolor flow assays.

  • Other polymer materials
  • Microparticles

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Silica microparticles

Inorganic microparticles widely used in nucleic acid separation, cell separation, immunoassays, and other research fields.

The silica microparticles in this series are non-porous spherical microparticles with a large specific surface area, a hydrophilic surface, and good dispersibility. Additionally, due to their excellent optical and mechanical properties, they are used in research areas such as the application of inorganic microparticles. Silica microparticles can be divided into two types: those that are unmodified and those that are modified with functional groups such as carboxyl, amino, and streptavidin affinity ligands. These are widely used in the separation of nucleic acids, cell separation, immunoassays, and other research fields.

  • Chemicals
  • Microparticles

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Magnetic polymer microparticles

The particle size of magnetic polymer microparticles ranges from 1.0 to 20 μm, and they are very uniform, with a CV of typically less than 3.0%.

Magnetic polymer microparticles have a layered structure, with a porous polymer core inside and a polymer of different materials on the outside. The magnetic material is filled in the gaps between the layered structures. The particle size ranges from 1.0 to 20 μm and is very uniform, with a CV usually less than 3.0%. They are applied in various scenarios. The surface of the microparticles has very low nonspecific adsorption, making them particularly suitable for the development of highly sensitive biological detection methods, such as the development of magnetic microparticle chemiluminescent reagents. They can also be used in various fields such as immunoprecipitation, co-precipitation, cell magnetic separation, and nucleic acid specificity capture, among others in biomagnetic separation.

  • Other polymer materials
  • Microparticles

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Non-magnetic fluorescent coding microparticles, particle size 4μm

Non-magnetic product with red fluorescent coating made of internally dyed fluorescent microparticles.

Polystyrene material, carboxyl group surface modification, particle size 4μm, red color of the APC fluorescence channel, and a lineup of seven types of fluorescent coding products with intensities ranging from A to G.

  • Chemicals
  • Microparticles

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Bridged urethane microparticles (polymer microparticles)

It is a microparticle polymer of urethane that has a soft and moist texture, created from suspension polymerization.

- It is a spherical cross-linked fine particle with excellent fluidity and slip properties. - It easily disperses in water and most organic solvents. - It has excellent heat resistance and solvent resistance.

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Cellulose / Calcium Carbonate Hybrid Microparticles

Hybrid microparticles with 100% biomass of cellulose and calcium carbonate.

It is perfectly spherical and insoluble in water and solvents.

  • plastic
  • Composite Materials
  • Microparticles

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Oxide nanoparticles

Developed using advanced manufacturing technology for nanoparticle dispersions! Oxide nanoparticles are also expected in the field of biotechnology.

Our company has developed "oxide nanoparticles" and "nanocolloids" by utilizing the synthesis of organic and inorganic materials, as well as the manufacturing technology for particle dispersion in both powder and wet forms, which we have cultivated over many years in the research and development of organic pigments and functional materials. It is known that when the size of metals, semiconductors, or oxides enters the nanoscale, they exhibit different physical and chemical properties compared to bulk materials. By applying these properties, we expect to see applications in various fields, including nanostructure modifiers for ceramics, thin film synthesis, coatings, and in the biomedical field for drug delivery, new contrast agents, and artificial tissues. 【Functions Different from Bulk Materials】 ■ Quantum size effect ■ Miniaturization of devices ■ Increased reactivity due to increased specific surface area ■ Improved solubility and diffusion rates ■ Enhanced memory functions, etc. *For more details, please refer to the PDF document or feel free to contact us. *If you would like a paid sample, please inquire.

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Biodegradable materials: biodegradable resin beads/scrub/biodegradable resin microparticles

Using 100% natural biomass-based biodegradable resin material that does not use any petroleum!

Our company has developed a material called biodegradable resin beads based on cellulose, polylactic acid, and starch-based biodegradable resins. We offer a standard grade with an average size of several tens of microns, as well as a grade made from 100% natural biomass-based biodegradable resin material that does not use any petroleum. In particular, materials that combine biodegradable resin with cellulose nanofibers have been confirmed to enhance the biodegradability of regular biodegradable resins, making them more environmentally friendly. 【Features】 ■ Can replace microplastic beads (microplastic pollution) found in facial cleansers, body shampoos, toothpaste, and various cosmetics ■ Uses 100% natural biomass-based biodegradable resin material without any petroleum ■ Enhances biodegradability through the combination of biodegradable resin and cellulose nanofibers *If you would like a paid sample, please contact us. *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials
  • Microparticles

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True spherical silica microparticles "AdmaNano"

Spherical silica microparticles that achieve a dramatic improvement in fluidity, high packing density, and enhanced sinterability!

"Admanano" is a nanometer-sized spherical silica particle created through chemical reactions in a liquid medium, with an ideal treatment applied to its surface. The aggregation between particles is minimal, allowing for very easy dispersion in organic substances. Furthermore, by dispersing in organic materials, it is possible to obtain a uniform organic-inorganic hybrid at the nanoscale. 【Basic Properties】 ■ High Dispersion: Achieves excellent dispersibility through special surface treatment ■ High Purity: Realizes high purity suitable for use in memory applications ■ Uniform Dispersion: Easily dispersible into primary particles ■ High Transparency: Maintains transparency with monodispersity ■ Mechanical Property Enhancement: Allows for increased strength and low thermal expansion while maintaining transparency *For more details, please request documentation or view the PDF data available for download.

  • Other polymer materials
  • Microparticles

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True spherical oxide microparticles "Adomafine"

Key materials blended into cutting-edge materials in various fields!

"Adomafine" is a spherical microparticle created by oxidizing metal powder using a unique method called the VMC method. The surface is non-porous, resulting in low moisture content and minimal aggregation between particles, which leads to good dispersibility. Additionally, the particle size distribution is sharp, making formulation control easy. 【Basic Characteristics】 ■ Spherical Microparticles: Spherical microparticles ranging from 0.2 to 10 μm ■ High Purity: Achieved through high-purity raw materials and a special method ■ Low Specific Surface Area: Non-porous surface with low moisture content ■ Sharp Particle Size Distribution: Sharp distribution allows for easy formulation control ■ High Dispersibility: Minimal adhesion between particles results in good dispersibility *For more details, please download the PDF or feel free to contact us.

  • Other polymer materials
  • Microparticles

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[Developed Product] Microparticles 'MSP-N Series'

It does not dissolve in many organic solvents! It has excellent heat resistance compared to general organic polymers.

The "MSP-N Series" consists of polymethyl silsesquioxane microparticles with a three-dimensional structure formed by siloxane bonds. Compared to general organic polymers, it exhibits excellent heat resistance and does not dissolve in many organic solvents. Additionally, we also offer composite particles called the "Silcrusta Series," which are coated with polymethyl silsesquioxane that has a three-dimensional structure formed by siloxane bonds. 【Features of the MSP-N Series】 ■ Excellent heat resistance compared to general organic polymers ■ Does not dissolve in many organic solvents *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials
  • Microparticles

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Biomass microparticles

Spherical fine particles with excellent softness, composed of 40% biomass.

In response to the increasingly serious environmental issues caused by plastics in recent years, we have developed polymer microparticles using biomass materials from an environmental conservation perspective. This contributes to a sustainable society and helps reduce environmental impact. 【Features】 ■ Biomass content of 40% With a biomass content of approximately 40%, these can be used as environmentally friendly products. By replacing the conventional microparticles with these, an improvement in biomass content can be achieved. ■ Softness With about one-fourth the hardness compared to our general-purpose acrylic particles, these provide a soft feel to the coating. They also possess a similar level of softness compared to our conventional soft microparticles, allowing for environmental compatibility while maintaining traditional performance. ■ Customizability Particle size and solvent resistance can be customized according to your requirements. 【Applications】 - Additives for environmentally friendly paints (matte finish, tactile enhancement, decorative effects, scratch resistance, etc.) - Blocking prevention agents for films - Light diffusion agents, etc. *We also offer microparticles with biodegradability, including those that decompose in water and soil, as biodegradable powders.

  • plastic
  • Microparticles

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Food contact compliant polymer microparticles (acrylic-styrene)

It can be used as an additive for coatings and inks in food packaging, providing design features, texture, and anti-blocking properties.

This is a polymer microparticle formulated for food contact applications. We offer a wide range of particle size options, allowing you to choose according to your needs. 【Features】 ■ Compliance with food contact regulations in various countries We provide grades that comply with food contact regulations in Japan, the US, the EU, and Switzerland. *Compliance status varies by grade. Please refer to the catalog for details. ■ Wide lineup (particle size, softness) We have grades with adjustable particle sizes ranging from 5μm to 50μm. Additionally, we offer grades that provide softness, allowing you to select the optimal grade for your application. 【Applications】 Food packaging, food wrapping, food containers Packaging films for daily necessities, etc. 【Expected Effects】 Matte finish, aesthetic enhancement Improved scratch resistance and scratch-proof properties Enhanced tactile feel and soft touch Surface texture enhancement, blocking prevention (AB agents), etc.

  • plastic
  • Other optical parts
  • Other electronic parts
  • Microparticles

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(Wavelength control technology) Acrylic-based microparticles

It is a polymer microparticle that can control the wavelength in a specific domain.

This is a resin microparticle that can control the wavelength of specific areas by adjusting particle properties and compounding with functional materials. 【Features】 ■ Wavelength Control The wavelength of specific areas is adjusted through particle composition, particle size, and compounding with other materials. ■ Customizability Customization of particle size and particle size distribution is possible. *Customization may not be possible depending on the desired performance. 【Development Example】 Blue Light Cut Microparticles These microparticles suppress light in the blue light range. (Expected Effects) - In addition to light diffusion, it is possible to suppress light in the blue light range. - The cut rate for the blue light range can be controlled arbitrarily up to a maximum of 60%. If you have requests regarding wavelengths in areas other than blue light, please feel free to consult us. We will consider development. For more details, please check our website or contact us directly.

  • plastic
  • Microparticles

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Porous acrylic-based microparticles

Porous-shaped resin microparticles

This is a porous polymer microparticle utilizing our unique shape control technology. We offer two types: standard porous microparticles and highly porous microparticles. 【Sizes】 - Porous microparticles: 4μm, 8μm, 20μm - Highly porous microparticles: 8μm *The grade suitable for cosmetic applications is only the 8μm product. 【Features】 (1) When blended into coatings, it can provide a high matte effect to the film. (2) It has oil absorption properties and can also be considered as a carrier for substances. (3) Due to its excellent oil absorption characteristics, it can also be considered as a thickening aid. 【Physical Properties】*Comparison for 8μm product Porous microparticles: Specific surface area 85m^2/g, oil absorption 140ml/100g Highly porous microparticles: Specific surface area 150m^2/g, oil absorption 200ml/100g

  • plastic
  • Microparticles

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Monodisperse polymer particles, spherical shape, sharp particle size distribution, wide lineup.

Uniformly sized spherical organic resin microparticles with a consistent particle size distribution.

This is a spherical resin microparticle with a controlled particle size distribution, utilizing our unique polymerization technology. It can be considered for applications that require a sharp particle size distribution. 【Features】 (1) We can meet requests for fine particle sizes from a wide range of product lineups. (2) The refractive index can be adjusted between 1.49 and 1.59. (3) Various customizations such as particle size, refractive index, and solvent resistance are also available. 【Examples of Applications】 Film coating applications that dislike coarse or small particles, and pore-forming applications that require uniform pores.

  • plastic
  • Microparticles

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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.

  • plastic
  • Microparticles

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