Distribution Measuring Instrument(no) - List of Manufacturers, Suppliers, Companies and Products

Distribution Measuring Instrument Product List

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Dynamic Light Scattering Particle Size Distribution Measurement Device 'NANOTRAC FLEX'

Demo/analysis now available. The world's smallest size as a nanoparticle size measurement device! Provides stable data across a wide range of concentrations.

The "NANOTRAC FLEX" is a particle size distribution measurement device that allows flexible measurements in various containers such as beakers by taking the probe mechanism externally. Maintaining the features of the well-established Nanotrack series, it can accommodate even more applications by combining with the streaming potential measurement device Stabino. It is one of the smallest devices in the world for measuring nanoparticle sizes. 【Features】 ■ Particle size: 0.8 to 6500 nm ■ High-resolution measurement (heterodyne detection of scattered light / frequency analysis) ■ Measurement possible in aqueous and organic solvent systems ■ Provides stable data across a wide concentration range ■ Measurement principle (Dynamic Light Scattering: DLS) *For more details, please refer to the PDF document or feel free to contact us.

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Carbon Neutral Particle Size Distribution / Particle Size Distribution and Zeta Potential Measurement Device

Evaluation of materials for CO2-emission-free clean energy "batteries" - Particle size distribution and zeta potential measurement using a single device.

The NANOTRAC WAVE II series is a particle size distribution (particle size distribution) and zeta potential device that uses backscattering measurement with an optical probe. It is capable of obtaining stable data from low to high concentrations. 【Applications】 Battery materials, beverages, food, pharmaceuticals, cosmetics, cement, inks, paints, pigments, semiconductors, minerals, polymer materials, polymers. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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Nanoparticle size distribution measurement device "SALD-7500nano"

Samples with concentrations below 1 ppm can also be measured! Achieving a wide range and real-time evaluation of dispersion and aggregation characteristics.

The "SALD-7500nano" is a nanoparticle size distribution measurement device that measures fine bubbles ranging from 100nm to 60μm and traces changes in bubble diameter in real-time. It accurately and sensitively measures the particle distribution of low-concentration nanoparticles and highly light-absorbing nanoparticles. This device utilizes the "nanoparticle size distribution measurement device" manufactured by Shimadzu Corporation, which boasts overwhelming demand as an analytical measurement instrument manufacturer. 【Features】 ■ Measures fine bubbles from 100nm to 60μm ■ Accurately and sensitively measures the particle distribution of low-concentration nanoparticles and highly light-absorbing nanoparticles ■ Capable of measuring low-concentration samples of less than 1ppm ■ Utilizes the "nanoparticle size distribution measurement device" manufactured by Shimadzu Corporation *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Micronization and Dispersion Effects of Titanium Dioxide Using a Bead Mill

This is a document on the dispersion evaluation of titanium oxide, focusing on the microparticle production by bead milling and the dispersion effects of polymer dispersants!

This document introduces the dispersion evaluation of titanium dioxide, the micronization using a bead mill, and the dispersion effects of polymer dispersants. Here, using titanium dioxide, we present measurement cases that evaluate the effects of dispersants and the dispersion state achieved by a wet bead mill, using the laser diffraction/scattering method and dynamic image analysis particle size distribution measurement device "Microtrac Sync," the dynamic light scattering (DLS) particle size distribution measurement device "Nanotrac Wave II," and the streaming potential measurement device "Stabino." [Contents] ■ Overview ■ Experiments ■ Measurement Results *For more details, please refer to the PDF document or feel free to contact us.

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No. 13 T-plot method for mesoporous materials...(Applied Edition 4)

Introduction to the structural evaluation of mesoporous zeolite using the t-plot method (Application Edition 4)!

This document introduces the structural evaluation of mesoporous zeolite using the t-plot method (Application Edition 4) with graphs and tables. The H+-type ZSM-5, prepared by heating NH4-type ZSM-5 at 535°C for 3 hours under atmospheric pressure, is confirmed to be an aggregate of polyhedral layered particles around 200 nm in size, with slit-shaped pores between the particles, as observed in SEM images. The N2 adsorption-desorption isotherm at 77.4K for H+-type ZSM-5 shows hysteresis that closes at p/p0=0.43, indicating the presence of mesopores between fine particles. The adsorption isotherm is classified as Type I+IV, which also indicates the presence of micropores within the particles. *For more details, please refer to the PDF document or feel free to contact us.*

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[Data] Evaluation of the Dispersion of the Protein Crystallization Process

Evaluation of dispersibility by measuring the particle size distribution of ribosome-lysozyme.

This document presents an example of using the nanoparticle tracking analysis device, NanoTrack, to measure the particle size distribution of protein dispersion solutions with high precision and to appropriately evaluate the dispersion state. In the process of crystallizing proteins, it is a very important factor that the proteins are uniformly dispersed (monodisperse) in the solution. We encourage you to read it. 【Contents】 ■ Overview ■ Example of resolution measurement at ultra-low concentrations Sample: Ribosome ■ Transition of aggregation state due to concentration changes Sample: Lysozyme ■ Albumin measurement data (volume distribution) ■ Evaluation equipment *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Conductive Polymer (Clevios PEDOT/PSS) ..

It is possible to measure the particle size distribution of conductive polymers that are difficult to measure!

This document presents an example of evaluating the particle size distribution of "Clevios PEDOT/PSS," a representative conductive polymer. Conductive polymers are functional materials widely used in the development of next-generation products, such as touch panel films essential for modern daily life, dye-sensitized solar cells (organic solar cells) that can be installed in various locations, which were previously impossible with conventional solar cells, and organic LEDs used in lighting and displays. [Contents] ■ Overview ■ Measurement Samples ■ Evaluation Equipment ■ Measurement Results ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.

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World Particle Size Distribution Measurement Equipment Market Research Report (2022-2031)

World Market for Particle Size Distribution Measurement Instruments (2022-2031): Dynamic Image Analysis (DIA), Static Image Analysis, Laser Diffraction, Dynamic Light Scattering (DLS)

The research report by Transparency Market Research analyzes the global market for particle size distribution measurement instruments and clarifies the market situation. This document includes an introduction, executive summary, market trends, analysis of related industries and key indicators, analysis by technology (dynamic image analysis (DIA), static image analysis, laser diffraction, dynamic light scattering (DLS), and others), analysis by dispersion type (dry particles, wet particles, spray particles), analysis by industry (pharmaceuticals, food & beverages, construction & building, chemicals, and others), regional analysis (North America, Europe, Asia-Pacific, Middle East & Africa, South America), competitive analysis, and company information.

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[Data] Evaluation of the Physical Properties of Nanomaterials

Multifaceted Physical Property Evaluation of Carbon Black

This document introduces the evaluation of the particle size distribution and specific surface area/pore distribution of carbon black. Carbon black, which has excellent electrical and thermal conductivity, is used in various industrial applications such as electrode materials, rubber and plastic fillers, and pigments. Its structure is known to be complex, consisting of spherical particles that form primary aggregates and further secondary agglomerates. Here, we will evaluate the physical properties of carbon black from multiple perspectives and analyze its aggregation state. 【Contents】 ■ Overview ■ Measurement Samples ■ Evaluation Equipment ■ Discussion ■ Summary ■ Measurement Results *For more details, please refer to the PDF document or feel free to contact us.

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