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ChromCore Normal-Phase/HILIC HPLC columns are based on a combination of novel monodispersed particle technology, advanced column chemistry and well-established column packing processes. These columns are suited for a broad range of applications, including pharmaceutical, food and beverage, clinical diagnostics, chemical, environmental, consumer products, and more.
ChromCore Silica columns are based on unmodified, monodispersed, high-purity, porous silica particles, and designed for separating highly hydrophobic compounds under normal phase conditions.
ChromCore NH2 columns are based on high surface coverage propylamino modified silica particles. They are designed for separating polar and hydrophilic analytes, such as monosaccharides, oligosaccharides and sugar alcohols under HILIC conditions.
ChromCore CN columns are based on high surface coverage cyano modified silica particles, and designed for separating polar analytes, such as penicillins and steroids.
ChromCore HILIC-Diol columns are based on proprietary diol modified monodispersed, high-purity, silica particles. They provide a neutral surface with intermediate polarity, suited for separating pesticides, herbicides, pharmaceutical metabolites, and polar natural products
ChromCore HILIC-Amide columns are based on proprietary amido modified silica particles. They provide higher polarity than ChromCore HILIC-Diol columns, designed for separating polar compounds in a broad range of applications.
ChromCore HILIC-Imidazole columns are based on proprietary polar imidazole modified silica particles. With a polar and N-containing ring structure, they provide weak anion exchange property with intermediate polarity, featuring a selectivity complementary to other HILIC columns for separating highly polar analytes in a broad range of applications.
ChromCore HILIC-ZW columns are based on innovative monodispersed particle technology and unique zwitterionic sulfobetaine column chemistry. They provide salt exchange property and high polarity, featuring a selectivity complementary to other HILIC columns for separating highly polar compounds in a broad range of applications.