"Avantor"
Disodium hydrogen phosphate, anhydrous 98.0-100.5% (dried basis) USP, Multi-Compendial, J.T.Baker®
Supplier: Avantor
GMP Manufactured Product Meets E.P. Chemical Specifications Meets JPE Specifications Meets U.S.P Requirements CAUTION: For Manufacturing, processing or repackaging Bulk Pharmaceutical Chemical
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Avantor® Genesis, HPLC Columns, C18
Supplier: Avantor
Avantor® Genesis phases are based on high purity metal-free spherical silica.
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n-Heptane ≥99%, ULTRA RESI-ANALYZED® for organic residue analysis, J.T.Baker®
Supplier: Avantor
n-Heptane ≥99%, ULTRA RESI-ANALYZED® for organic residue analysis, J.T.Baker®
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Nitric acid 67 - 70% (w/w), BAKER INSTRA-ANALYZED® Plus for trace metal analysis, J.T.Baker®
Supplier: Avantor
Nitric acid 67 - 70% (w/w), BAKER INSTRA-ANALYZED® Plus for trace metal analysis, J.T.Baker®
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J.T.Baker® BAKERBOND®, Supported Liquid Extraction Plates
Supplier: Avantor
J.T.Baker® BAKERBOND® supported liquid extraction (SLE) plates are an ideal and faster alternative to traditional liquid-liquid extraction methods and allow excellent recoveries of analytes from biological matrices.
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Zinc sulphate heptahydrate, BAKER, Laboratory Reagent, J.T.Baker®
Supplier: Avantor
Zinc sulphate heptahydrate, BAKER, Laboratory Reagent, J.T.Baker®
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Avantor® ACE® Excel® C18-AR, HPLC/UHPLC Columns, Analytical, 5 µm
Supplier: Avantor
The Avantor® ACE® Excel® C18-AR phase utilises a specially developed ligand combining a C18 chain with integral phenyl functionality, thus combining the benefits of both C18 and phenyl characteristics into a single phase. This can be used for ‘standard’ C18 column separations, but is additionally recommended for separations that involve compounds containing aromatic functionality.
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Ethanol absolute, BAKER ANALYZED® HPLC for HPLC, analytical reagent, J.T.Baker®
Supplier: Avantor
Ethanol absolute, BAKER ANALYZED® HPLC for HPLC, analytical reagent, J.T.Baker®
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Avantor® Apollo C18, HPLC Columns
Supplier: Avantor
Avantor® Apollo HPLC columns use high purity, base deactivated silica for powerful separations.
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Avantor® ACE® C18-HL, HPLC Columns, 5 µm
Supplier: Avantor
Avantor® ACE® C18-HL columns provide great reproducibility and column lifetime. These stainless steel columns are available in a wide range of particle sizes and dimensions from capillary to preparative.
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Vydac 201TP C18, HPLC columns
Supplier: Avantor
Vydac TP is the first range of wide pore media phases developed in the Vydac range and it is the industry's standard for peptide and protein separations. The large pores of the 300 Å TP silica give polypeptide molecules complete access to the interior of the silica pores.
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Avantor® ACE® Excel® AQ, HPLC/UHPLC Columns, Analytical, 2 µm
Supplier: Avantor
Avantor® ACE® Excel® AQ columns provide great reproducibility and column lifetime. These stainless steel columns are available in a wide range of particle sizes and dimensions from capillary to preparative.
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Avantor® ACE® Phenyl, HPLC Columns, 5 µm
Supplier: Avantor
These ultra inert Avantor® ACE® Phenyl columns provide great reproducibility and column lifetime. These stainless steel columns are available in a wide range of particle sizes and dimensions from capillary to preparative.
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Avantor® Partisil Silica, HPLC Columns
Supplier: Avantor
Avantor® Partisil® was one of the first commercially available irregular silicas. A large surface area gives it a high loading capacity. Avantor® Partisil® ion-exchange materials are widely referenced and remain one of the most popular choices for analysts.
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Avantor® Ultrasphere®, HPLC Columns
Supplier: Avantor
Avantor® Ultrasphere® columns remain widely referenced within both industry and academia and are recognised to provide excellent chromatographic performance.
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Avantor® ACE® Excel® C18-PFP, HPLC/UHPLC Columns, Analytical, 5 µm
Supplier: Avantor
Avantor® ACE® Excel® C18-PFP phase utilizes a specially developed ligand combining a C18 chain with integral PFP functionality. This results in a phase that maintains the hydrophobic, stability and low bleed characteristics of leading C18 phases, yet provides the multiple retention mechanisms of a PFP phase.
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