Feature high loading capacity for exceptional suitability in the analysis of low abundant peptides in complex proteomics samples with Thermo Scientific™ PepMap™ 100 C18 LC Columns. PepMap LC columns offer lengths targeting fast or high resolution peptide separation.
Simultaneously separate the herbicides diquat and paraquat with Thermo ScientificTM AcclaimTM Trinity Q1 LC Columns. These tri-mode (WCX, WAX, RP) columns offer unmatched high-resolution and high-throughput trace analysis through LC-MS/MS and LC-UV methods.
Separate highly hydrophilic molecules by hydrophilic interaction liquid chromatography using Thermo Scientific™ Acclaim™ HILIC-10 LC Columns. These columns retain and separate highly polar molecules that are unretained by reversed-phase chromatography.
Achieve baseline separation of carbamate pesticides (N-methylcarbamate and N-methylcarbamoyloxime pesticides) specified in U.S. EPA Method 531.2 by using Thermo Scientific™ Acclaim™ Carbamate LC Columns.
For surfactant analysis using high-sensitivity detection, the column of choice is the Thermo Scientific™ Acclaim™ Surfactant Plus LC Columns. This new generation of high-efficiency silica-based columns features exceptionally low bleed for use with charged aerosol detectors (CAD) and mass...
Separate water-soluble polymers and oligomers with Thermo Scientific™ Acclaim™ SEC-300 Size Exclusion Chromatography HPLC Columns. These resin-based, high-performance, size-exclusion chromatography columns cover molecular weight range: 5μm, 300Å.
For reversed-phase separation of analytes with moderate hydrophobicity, use Thermo Scientific™ Acclaim™ 120 C8 LC columns. These high-performance columns provide selectivity that is similar to Acclaim 120 C18 columns with a predictable elution order but less retention.
For unparalleled performance in separating hydrophilic, aliphatic, and aromatic organic acids use Thermo Scientific™ Acclaim™ Organic Acid LC Columns. These high-efficiency, reversed-phase silica columns are compatible with 100% aqueous mobile phases and have excellent hydrolytic stability at low...
Achieve even greater power of separation, speed, and throughput using Thermo Scientific™ Acclaim™ VANQUISH™ C18 UHPLC columns. These reversed phase columns were developed in conjunction with the Vanquish UHPLC system to take advantage of the system's extended pressure capabilities and robustness.
Achieve even greater power of separation, speed, and throughput of polar and nonpolar compounds in a single run using Thermo Scientific™ Acclaim™ VANQUISH™ PA2 UHPLC columns. These reversed-phase columns were developed in conjunction with the Vanquish UHPLC system to take advantage of the system's...
Achieve baseline resolution of all 14 explosives listed in EPA SW-846 Method 8330 with Thermo Scientific™ Acclaim™ Explosives E2 LC Columns, Nitroaromatics and Nitramines by HPLC. Their unique column chemistries deliver superior resolution with complementary selectivities.
Improve the separation efficiency in your reversed-phase applications with Thermo Scientific™ Acclaim™ 120 C18 columns. These columns feature an ultrapure silica substrate with extremely low metal content to minimize tailing effects and deliver symmetrical peak shapes.
For separations of hydrophobic, structurally related isomers, Thermo Scientific™ Acclaim™ C30 LC reversed-phase columns provide superior results. The covalent modification of C30 alkyl silane on ultrapure, spherical, porous silica gel gives these columns high shape selectivity.
Use the Thermo Scientific™ Acclaim™ Carbonyl C18 LC Columns for superior resolution and high-throughput separation of dinitrophenylhydrazine (DNPH) derivatives of aldehydes and ketones. This silica-based, reversed-phase column provides ideal selectivity and baseline resolution of DNPH derivatives...
Resolve polar and nonpolar compounds in a single run with Thermo Scientific™ Acclaim™ PolarAdvantage II (PA2) reversed-phase columns. These high-efficiency, silica-based columns have a polar-embedded stationary phase that operates over a wider range of chromatographic conditions than possible with...