Acetonitril
Acetonitrile (CH₃CN) is a polar aprotic solvent and the simplest organic nitrile, valued for its high dielectric constant, low viscosity, and complete miscibility with water and most organic solvents. It is extensively used in high-performance liquid chromatography (HPLC), organic synthesis, and as a solvent in battery electrolytes and pharmaceutical production. Toxic and flammable, acetonitrile requires careful handling under well-ventilated conditions, with appropriate protective equipment and fire safety measures.
Acetonitril ≥99.8%, SupraSolv® for GC-MS
Supplier: Merck
Acetonitril ≥99.8%, SupraSolv® for GC-MS
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Acetonitril, LiChrosolv®, Isocratic Grade for liquid chromatography, Supelco®
Supplier: Merck
With their high degree of UV transmittance, low particle count, low acidity and alkalinity and low evaporation residue level, LiChrosolv® solvents are ideal for reproducible separations. Since separations are normally carried out under gradient conditions in analytical HPLC, we offer solvents in "gradient grade" as well as "isocratic grade". This enables to minimize the gradient effect of the solvent involved.
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Acetonitril, LiChrosolv® tested for UHPLC-MS, Supelco®
Supplier: Merck
Highest purity solvents for UHPLC-MS analysis.
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Acetonitril, Uvasol® for spectroscopy, Supelco®
Supplier: Merck
Acetonitril, Uvasol® for spectroscopy, Supelco®
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Acetonitrile ≥99.9% PFAS solvent tested according to EPA methods 533, 537.1 and 1633, LiChrosolv®, Supelco®
Supplier: Merck
Acetonitrile tested for 533, 537.1 and 1633 PFAS Methods LiChrosolv®
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Acetonitril, low water content ≥99.8% (by GC, corrected for water content), BAKER BIO-ANALYZED®, J.T.Baker®
Supplier: Avantor
Acetonitril, low water content ≥99.8% (by GC, corrected for water content), BAKER BIO-ANALYZED®, J.T.Baker®
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Acetonitril, ultra-low water content ≥99.5% (by GC, corrected for water content), BakerDRY™, J.T.Baker®
Supplier: Avantor
Specifically manufactured for use in organic, organometallic, and oligonucleotide synthesis requiring low water solvents.
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Acetonitril ≥99.8% (by GC, corrected for water content), ULTRA RESI-ANALYZED® for organic residue analysis, J.T.Baker®
Supplier: Avantor
Acetonitril ≥99.8% (by GC, corrected for water content), ULTRA RESI-ANALYZED® for organic residue analysis, J.T.Baker®
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Acetonitril, anhydrous (max. 0.001% H₂O) ≥99.8%
Supplier: VWR Chemicals
250 ml bottle with a septum cap featuring six separate re-sealable puncture points
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Acetonitril ≥99.9%, HiPerSolv CHROMANORM® for UHPLC-MS
Supplier: VWR Chemicals
Acetonitril ≥99.9%, HiPerSolv CHROMANORM® for UHPLC-MS
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Acetonitril ≥99.95%, HiPerSolv CHROMANORM® ULTRA for LC-MS, suitable for UPLC/UHPLC-MS instruments
Supplier: VWR Chemicals
Acetonitril ≥99.95%, HiPerSolv CHROMANORM® ULTRA for LC-MS, suitable for UPLC/UHPLC-MS instruments
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Acetonitril, BAKER ANALYZED® ACS, J.T.Baker®
Supplier: Avantor
Acetonitril, BAKER ANALYZED® ACS, J.T.Baker®
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Acetonitril ≥99.9%, HiPerSolv CHROMANORM® for preparative HPLC
Supplier: VWR Chemicals
Acetonitril ≥99.9%, HiPerSolv CHROMANORM® for preparative HPLC
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Acetonitril, BAKER BIO-ANALYZED®, J.T.Baker®
Supplier: Avantor
Acetonitril, BAKER BIO-ANALYZED®, J.T.Baker®
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Acetonitril for DNA synthesis
Supplier: Merck
Additional to our high quality acetonitrile dried with low water content up to 10 ppm our DNA-/RNA synthesis reagents with its high quality, lowest water and acid content are best requirements for a reliable and reproducible DNA-/RNA synthesis with high yields. A wide variety of packaging types supporting specific synthesis instrumentations, for quantities from bottle to bulk, and the will to customized solutions completes our innovative offering.
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Acetonitril ≥99.9%, LiChrosolv® Reag. Ph. Eur., gradient grade for liquid chromatography, Supelco®
Supplier: Merck
With their high degree of UV transmittance, low particle count, low acidity and alkalinity and low evaporation residue level, LiChrosolv® solvents are ideal for reproducible separations. Since separations are normally carried out under gradient conditions in analytical HPLC, we offer solvents in gradient grade; as well as isocratic grade. This enables to minimise the gradient effect of the solvent involved.



