10836
Silicone oil AR 20
viscosity ~20 mPa.s, neat(25 °C)
Synonyme(s) :
Polyphenyl-methylsiloxane
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About This Item
Produits recommandés
Indice de réfraction
n20/D 1.441-1.445
Niveau de qualité
Viscosité
~20 mPa.s, neat(25 °C)
Densité
1.000-1.020 g/mL at 20 °C
Description générale
Silicone oil AR 20 is a polydimethylsiloxane with phenyl groups that is commonly used as a heat transfer or pressure transfer fluid.
Application
Silicone oil AR 20 has been used:
- As a Segmenting fluid in polymerase chain reaction (PCR).
- In hollow fiber liquid-phase microextraction (LPME) procedure for extraction of hydrophobic drugs from human breast milk.
- As a fluid to demonstrate pores in droplet interface bilayers (DIBs).
Caractéristiques et avantages
Especially good thermostability (-50°C to +230°C)
Code de la classe de stockage
10 - Combustible liquids
Classe de danger pour l'eau (WGK)
WGK 3
Point d'éclair (°F)
338.0 °F - Not applicable
Point d'éclair (°C)
170 °C - Not applicable
Équipement de protection individuelle
Eyeshields, Gloves
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Les clients ont également consulté
Liquid-phase microextraction of drugs from human breast milk
Analytica Chimica Acta, 491(2), 155-161 (2003)
Formation of droplet interface bilayers in a Teflon tube
Scientific reports, 6(2), 34355-34355 (2016)
Biomedical microdevices, 7(4), 269-272 (2006-01-13)
This paper evaluates the compatibility of segmenting fluids for two phase flow applications in biomedical microdevices. The evaluated fluids are chosen due to the variations in fluid properties and cost, while also reflecting their use in the recent literature. These
Ophthalmologica. Journal international d'ophtalmologie. International journal of ophthalmology. Zeitschrift fur Augenheilkunde, 201(3), 133-139 (1990-01-01)
Different methylphenylsilicone (MPS) and fluorosilicone (FS) oils having a higher specific gravity than water were investigated as vitreous replacements. Their intraocular tolerance in vitrectomized aphakic rabbit eyes was evaluated for periods of up to 4 months and compared to that
The Journal of chemical physics, 124(10), 104901-104901 (2006-03-18)
In some polymers, in addition to the usual structural alpha relaxation, a slower alpha' relaxation is observed with a non-Arrhenius temperature dependence. In order to understand better the molecular origin of this alpha' relaxation in poly(methylphenylsiloxane) (PMPS) we have studied
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