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particle Product List and Ranking from 42 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

particle Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. フジミインコーポレーテッド Gifu//Electronic Components and Semiconductors
  2. 大東化成工業 Osaka//others
  3. OsakaSodaCO.,LTD. Development&Commercialization Div. Hyogo//Chemical
  4. 4 JNC Tokyo//others
  5. 5 レンゴー 本社 Osaka//Paper and pulp

particle Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Plant-derived biodegradable spherical particles 'CELLULOBEADS' 大東化成工業
  2. Silver nanoparticles for low temperature and low pressure/no pressure sintering. OsakaSodaCO.,LTD. Development&Commercialization Div.
  3. Cosmetic ingredient cellulose particles "CELLUFLOW" JNC
  4. Plate-shaped alumina particles PWA フジミインコーポレーテッド
  5. 4 Biodegradable spherical cellulose particles "Viscopearl" レンゴー 本社

particle Product List

1~15 item / All 99 items

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Silica particles "Highpresica" synthesized from high-purity silicon compounds.

High-precision microspheres, known as High Presica, have characteristics such as "uniform particle size," "spherical shape," "high purity," and "adjustable hardness."

High Presica is a microparticle synthesized from high-purity silicon compounds. There are hard silica particles that excel in load resistance and soft organic-inorganic hybrid particles that do not scratch delicate substrates. The characteristics of High Presica include a very uniform particle size (monodisperse), a nearly spherical shape, and extremely high purity. Leveraging these features, it is used as a spacer in liquid crystal displays (LCDs) to maintain a uniform thickness of the cell containing the liquid crystal material, making it an essential component for enhancing LCD resolution. Additionally, it is used in various fields such as spacers for adjusting adhesive layer thickness, high-performance resin fillers (for semiconductor encapsulation materials, among others), and particles for high-performance film coatings. *For more details, please download the catalog.*

  • Glass

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Synthesis Technology: Metal Nanoparticles

It can be dispersed in organic solvents! It is used in various applications across a wide range of industries.

Our company uses a method called the bottom-up approach for the synthesis of metal nanoparticles and the synthesis of composite materials that support metal nanoparticles on a carrier. Compared to the top-down approach, it is possible to achieve a narrower particle size distribution. We have a track record of various synthesis methods and a wide range of elements. Our materials are used in a variety of industries for applications such as conductive materials, magnetic materials, luminescent materials, DDS materials, cosmetic materials, battery materials, and catalyst materials. 【Features】 ■ It is possible to disperse in organic solvents by introducing organic substances onto the particle surface. ■ Compared to the top-down approach, it is possible to achieve a narrower particle size distribution. ■ We have a track record of various synthesis methods and a wide range of elements. ■ We actively try elements and synthesis methods that have not been implemented before. *For more details, please refer to the related link page or feel free to contact us.

  • others
  • Other metal materials

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PET business

Short delivery time! Available for sale with a purity of over 98%, starting from a minimum quantity of 10mg.

Nard Institute was founded in 1972 starting from contract research business and began custom synthesis of PET reagents in 1995. For PET reagents, we have a wealth of synthesis achievements for numerous precursors and reference materials. Our company offers a wide range of products, available for sale with a purity of 98% (or 95%) or higher, starting from a minimum quantity of 10mg. We provide short delivery times and will attach HPLC charts with results. Product information is constantly updated, so please feel free to consult us. 【Features】 ■ Custom synthesis for reagents not listed in the catalog ■ Extensive manufacturing experience compliant with GMP ■ Manufacturing support from our subsidiary Nard Chemicals, which has a quality assurance system based on GMP standards ■ Design of compound structures suitable for PET probes and synthesis of derivatives to support early development of PET probes *For more details, please refer to the related links page or feel free to contact us.

  • Other contract services

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AOM Systems Inc. Spray Particle Measurement Device SpraySpy

A spray droplet particle measurement system that replaces phase Doppler method and laser diffraction method.

AOM Systems' SpraySpy is a completely new spray droplet/spray particle measurement system that uses a unique pulse displacement method (Time-Shift technique). It has obtained international patents and can simultaneously measure the size, velocity, and particle density of opaque or non-spherical particles and high-density spray particles, which was difficult with existing technologies such as phase Doppler method or laser diffraction method. Additionally, since the laser emission and detection parts are the same for detecting backscattered light, it eliminates the need for complicated adjustments of the detection part's position.

  • DKSH Japan AOM SpraySpy process.jpg
  • DKSH Japan AOM SpraySpy real time spray control.jpg
  • DKSH Japan AOM SpraySpy® histogram example.jpg
  • DKSH Japan AOM SpraySpy real time spray control2.jpg
  • Testing Equipment and Devices

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Tabletop Nanoparticle Deposition Device 'MPNP-160 BASIC'

Compact! Convenient! Affordable product!

The "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.

  • Other metal materials

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Observation of Conductive Particle Shapes in COG Implementation

Observing the conductive particles from the planar direction and the cross-sectional direction! A case study confirming the degree of deformation.

We will introduce the observation of the shape of conductive particles in COG implementation. ICs and liquid crystal panels are implemented using the COG method with ACF (anisotropic conductive film). A resin ball is used as the core, and a metal layer (such as nickel or gold) is deposited on its surface for conductivity. During connection, the particles deform appropriately to electrically connect the IC and the panel. To confirm the degree of particle deformation and the connection state, cross-sectional observations were conducted, revealing that the particle deformation amount was "medium," indicating an appropriate level of deformation. By examining the deformation of conductive particles from both the planar and cross-sectional directions, we can explore the correlation with display defects. Please feel free to contact us for any inquiries regarding panel-related defects. [Summary] - In implemented ICs, slight "warping" or "tilting" can cause differences in particle deformation between the edges and the center, potentially leading to display defects. - By examining the deformation of conductive particles from both the planar and cross-sectional directions, we can explore the correlation with display defects. *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices

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Nara Machinery Manufacturing Co., Ltd. Surface Modification of Particles

Nara Machinery's particle surface modification technology leads to applications in new materials.

At Nara Machinery Manufacturing, it is possible to create new materials that were not previously available and achieve significant performance improvements by modifying the surface of particles and compounding them. We have a hybridization system that allows for the fixation or film formation of fine particles (child particles) onto the surface of core particles (parent particles) in an extremely short time of about three minutes. This system is actively used in a wide range of fields based on combinations of raw materials. Additionally, our laser ablation technology, which generates nanoparticles of various materials and coats the surfaces of fine particles on-site, is also attracting attention. Through compounding, applications are possible in various fields. 【Features】 ■ Capable of creating new materials and achieving significant performance improvements ■ Actively used in a wide range of fields based on combinations of raw materials ■ Laser ablation technology that generates nanoparticles of various materials and coats the surfaces of fine particles on-site *For more details, please contact us or download the catalog.

  • Other processing machines
  • Other surface treatment equipment
  • Composite Materials

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Sudix Biotech SGNP Glycan-Immobilized Gold Nanoparticles

SGNP (Sugar-Immobilized Gold Nano-Particle) is a gold particle modified with sugar chains.

It has the characteristic of cross-linking with multivalent proteins and precipitating, allowing for the visual confirmation of interactions between glycan chains and proteins. Depending on how it is used, various assays, including the detection of glycan-protein interactions, are possible.

  • Contract Analysis

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Product List: Standard Particles by Particle Size

We will introduce "standard particles" with a very uniform particle diameter.

The "standard particles" handled by our company from Thermo Fisher Scientific have gained high trust in various fields, having been jointly developed with NIST for particle size measurement methods and adopted as NIST standards. The particle size standard particle series consists of highly reliable particles measured by photon correlation spectroscopy (PCS) and transmission electron microscopy (TEM) in accordance with NIST. These are uniform spherical particles calibrated by NIST's traceable methods, making them suitable for calibrating various analytical instruments and checking foreign matter inspection devices for silicon wafers, among other applications. Additionally, they are used in experiments and research requiring particles of specific sizes. 【Features】 ■ Particle size standard particles are very uniform spherical particles. ■ Highly reliable particles measured by photon correlation spectroscopy and transmission electron microscopy. ■ Particles calibrated by traceable methods. *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments

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Fluid visualization / PIV tracer particles

Polyethylene particles with a specific gravity of 1.00 suitable for visualizing water flow! Available in vibrant colors and with selectable particle sizes.

This product is a polyethylene tracer particle designed by Cospheric to be dispersed and follow the flow field as a marker for visualizing water flow. We offer a variety of particle colors and a wide range of particle sizes. You can select the most suitable particles according to your experimental methods, such as visual observation or PIV (Particle Image Velocimetry), and the equipment you are using. These particles are widely used in research related to fluid dynamics, such as visualizing and analyzing flow in tanks and pipes. 【Key Points】 ■ Specific gravity suitable for water flow - Particles with a specific gravity of 1.00 that easily follow the flow of water ■ Vividly colored and fluorescent particles - A diverse lineup with high visibility in colors such as red, blue, green, and yellow ■ Selectable particle sizes - Products available in particle sizes from 10μm to 1mm *For more details, please refer to the PDF document or feel free to contact us.

  • plastic
  • Other image-related equipment

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Introduction to the Business of Rare Metal Materials Research Institute, Inc.

Currently, we are collaborating with numerous large companies both domestically and internationally in various fields to provide a range of functional particles tailored to different applications.

Our company conducts proposal-based material development according to customer applications and also develops and provides materials based on customer requests. We possess over dozens of specialized reaction processes as liquid phase reaction processes, enabling us to produce nanoparticles and micron particles of elements such as Li metal and Ta metal. Additionally, we manufacture graphene dispersion liquids, which are applied in lubricants, antistatic films, and anti-fouling films. Regarding silver particles, we produce the world's first string-like particles and hexagonal plate-like particles, as well as silver powder for low-temperature sintering. We also manufacture 6N nanoparticles of Ga oxide, as well as nanoparticles of molybdenum oxide and tungsten oxide. We develop and provide various compounds, including simple oxides, complex oxides, carbides, and nitrides, as nanoparticles upon customer request. Our company can also polymer coat the surfaces of nanoparticles and micron particles. Through such surface modification, we can provide them in solvent dispersion. Since we are not a research institution, we develop our products to meet the required quantities from customers, even at the ton level. We aim for processing unit costs at the ton level to be between 30,000 to 50,000 yen/kg, designing our processes to fall within industrial price ranges. Our company takes full responsibility for supply and fulfillment.

  • Other metal 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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