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90515

Supelco

Micro particles based on polymethacrylate

analytical standard, size: 8 μm

Synonym(s):

PMMA microbeads, 2-Propenoic acid,2-methyl homopolymer, 2-methyl-2-propenoic acid homopolymer, Microparticles based on PMAA, Microparticles based on poly(methacrylic acid), Polymethacrylate

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About This Item

MDL number:
UNSPSC Code:
41116107
NACRES:
NA.24

grade

analytical standard

Quality Level

form

particles
suspension

concentration

10% (solids)

particle size

8 μm std dev <0.15 μm, coeff var <2%

application(s)

glass & ceramic
industrial qc
pharmaceutical

format

neat

storage temp.

2-8°C

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General description

Polymethacrylate-based microparticles are a particle size standard, ideal for characterizing particle size and count to present a particle size distribution (PSD) profile of a particle system.

Application

Applicable for calibrating and validating particle size analyzers.
Also used:
  • to identify the mechanical effects of PMMA microplastics on model cell membranes
  • in optical detection techniques that monitor the presence of micron-sized particles in water

Features and Benefits

  • suitable for routine instrument calibration checks, testing and corrections
  • available in 5 mL and 10 mL pack sizes as neat samples

Analysis Note

The exact values for particle size and standard deviation are determined for each lot and may be found on the certificate of analysis. These values are determined with an accuracy of 0.01 μm (Coulter Multisizer). Polymethacrylate based particles have a narrow size distribution and spherical shape. They are stable at temperatures of up to 100 °C Density is 1.22 g/cm3. The surface is negatively charged. Good biocompatibility and reduced nonspecific protein binding are characteristic.

Storage Class

10 - Combustible liquids

wgk_germany

nwg

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves


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Enhanced real-time optical detection of micron-sized particles in water using standing ultrasonic wave fields
SPIE Proc., 5994, 59940Z-59940Z (2005)
Microplastics destabilize lipid membranes by mechanical stretching
Fleury JB and Baulin VA
Proceedings of the National Academy of Sciences, 118(31) (2021)

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