Acetonitrile ≥99.9% (by GC), BAKER ANALYZED® HPLC, Ultra Gradient for HPLC, UHPLC, for spectrophotometry, J.T.Baker®
Supplier: AVANTOR PERFORMANCE MATERIAL LLC
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Danger
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Synonyms:
Methane, cyano-
, Ethyl nitrile
, Methyl cyanide
, Ethanoic acid nitrile
, Methanecarbonitrile
, Ethanenitrile
, Cyanomethane
, ACN
Management of Change (MOC) category = N
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JT9017-U5
CAJT9017-8T
CAJT9017-YU
JT9017-48
CAJT9017-YZ
CAJT9017-99
JT9017-47
JT9017-3Z
CAJT9017-9C
CAJT9017-J3
CAJT9017-N7
CAJT9017-J9
JT9017-E5
JT9017-8L
CAJT9017-9P
JT9017-92
CAJT9017-5J
JT9017-Z1
Acetonitrile ≥99.9% (by GC), BAKER ANALYZED® HPLC, Ultra Gradient for HPLC, UHPLC, for spectrophotometry, J.T.Baker®
Acetonitrile
Formula:
H₃CCN MW: 41.05 g/mol Boiling Pt: 81.6 °C (1013 hPa) Melting Pt: –45.7 °C Density: 0.782 g/cm³ (20 °C) Flash Pt: 2 °C (closed cup) Storage Temperature: Ambient |
MDL Number:
MFCD00001878 CAS Number: 75-05-8 EINECS: 200-835-2 UN: 1648 ADR: 3,II REACH: 01-2119471307-38 Merck Index: 13,00071 |
Specification Test Results
For Laboratory,Research,or Manufacturing Use | |
Ultraviolet Absorbance (1.00-cm cell vs. water) - 400-254 nm | ≤0.005 |
Ultraviolet Absorbance (1.00-cm cell vs. water) - 220 nm | ≤0.01 |
Ultraviolet Absorbance (1.00-cm cell vs. water) - 200 nm | ≤0.05 |
Ultraviolet Absorbance (1.00-cm cell vs. water) - UV Cut-off, nm | ≤190 |
Gradient Elution Test (a.u.) - 254 nm | ≤0.0005 |
Gradient Elution Test (a.u.) - 210 nm | ≤0.002 |
Density (g/mL) at 25°C | 0.775 - 0.780 |
Fluorescence Trace Impurities, measured as Quinine Base - at 450 nm Emission | ≤0.3 ppb |
Fluorescence Trace Impurities, measured as Quinine Base - at Emission Maximum for Impurities | ≤1.0 ppb |
Assay (CH₃CN) (by GC) | ≥99.9 % |
Appearance | Passes Test |
Color (APHA) | ≤10 |
Fluorescence Trace Impurities, measured as Quinine Base - Fluorescence detection (PAH) | ≤0.5 ppb |
Residue after Evaporation | ≤1.0 ppm |
Titrable Acid (µeq/g) | ≤0.8 |
Titrable Base (µeq/g) | ≤0.6 |
Water (by KF, coulometric) | ≤100 ppm |
Carbonyl Compounds (as Acetone) | ≤25.0 ppb |
Filtered through a 0.2 micron filter. |
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