84192
Micro particle size standard based on polystyrene monodisperse
analytical standard, size: 8.0 μm
동의어(들):
Monodisperse polystyrene latex particles (8 μm), monodisperse polystyrene microbeads (8 μm), monodisperse polystyrene microspheres (8 μm), polystyrene monodisperse microparticles (8 μm), Size standards
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모든 사진(1)
About This Item
추천 제품
Grade
analytical standard
Quality Level
형태
aqueous suspension
particles
교차
20 % cross-linked
농도
2% (solids)
입자 크기
8.0 μm std dev <0.1 μm, coeff var <1.5%
응용 분야
glass & ceramic
industrial qc
pharmaceutical
형식
neat
저장 온도
2-8°C
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일반 설명
Monodisperse polystyrene based micro particles (size: 8.0 μm) are a particle size standard, ideal to determine the particle size distribution (PSD) of test samples.
애플리케이션
Intended for use in validation and monitoring of the performance of particle sizing instruments.
It′s also used to:
It′s also used to:
- standardize methods of size-dependent chromatographic separations.
- characterize electrical impedance spectroscopy (EIS) performance of microfluidic device by size measurement.
특징 및 장점
- suitable for routine instrument calibration checks and corrections
- available in 5 mL pack size as a neat sample
분석 메모
For every lot exact values of particle size and standard deviation are determined with an accuracy of 0.001 μm. The size determination of these particles follows procedures described by National Institute of Standards and Technology (NIST, USA) respectively by the Community Bureau of Reference (BCR), esp.:
- Transmission electron microscopy (TEM)
- Scanning electron microscope
- Light microscopy
- Coulter™ counter with MDF-system
법적 정보
Coulter is a trademark of Beckman Coulter, Inc.
Storage Class Code
10 - Combustible liquids
WGK
WGK 3
Flash Point (°F)
410.0 °F
Flash Point (°C)
210 °C
개인 보호 장비
Eyeshields, Gloves
이미 열람한 고객
Multiplexing microelectrodes for dielectrophoretic manipulation and electrical impedance measurement of single particles and cells in a microfluidic device
Electrophoresis, 40(10), 1436-1445 (2019)
Capillary hydrodynamic chromatography reveals temporal profiles of cell aggregates
Analytica Chimica Acta, 910, 75-83 (2016)
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