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  • Image of OD Series Reversed-Phase C18 Column

    Separation Methods Technologies

    OD Series: SMT SAM-C18 phase with the highest functional ligand coverage confirmed with carbon analysis results of 24% carbon load. In these series, a very high density of the functional ligand, octadecyl (C18) molecule, is achieved through meticulous mixture of the C18 with proprietary spacer...

  • Image of ODL Series Reversed-Phase C18 Columns

    Separation Methods Technologies

    ODL Series: SMT SAM-C18 phase with the lowest functional ligand coverage confirmed with carbon analysis results of 12% carbon load. In these series, the proportional ratio of the functional C18 molecule, mixed with the proprietary spacer molecule, is reduced. The result is a packing material with...

  • Image of OL Series Reversed-Phase C8 Columns

    Separation Methods Technologies

    OL Series SMT SAM-C8 phase with the lowest functional ligand coverage confirmed with carbon analysis results of 6% carbon load. In these series, the proportional ratio of the functional ligand, octyl or C8 molecule , mixed with the proprietary spacer molecule, is reduced. The result is a packing...

  • Image of Specialty PAH Columns

    Separation Methods Technologies

    Polyaromatic hydrocarbons (PAH?s) are large organic compounds produced during combustion. Many of these compounds are carcinogenic and are often found in water, air and other natural habitats. Monitoring of these compounds is very crucial for a healthy environment. The major challenge in HPLC...

  • Image of Reversed-Phase C5 Columns

    Separation Methods Technologies

    SMT SAM-C5 columns consist of Pentyl as the functional ligand. The columns offer selectivities that are different from C8 and C18 reversed-phase columns when applied to separation of polyaromatic hydrocarbons. SMT-C5 columns are specially designed as complementary alternatives for the separation...

  • Image of Reversed-Phase Phenyl 1 Columns

    Separation Methods Technologies

    SMT-Phenyl column provides unique selectivity for aromatic compounds when compared to other reversed-phase packings such as C18 and C8. The pie electrons of the phenyl group can interact with the aromatic ring of an analyte to increase retention relative to less or non-aromatic analytes. Unique...

  • Image of Reversed-Phase Phenyl 2 Columns

    Separation Methods Technologies

    SMT-Phenyl column provides unique selectivity for aromatic compounds when compared to other reversed-phase packings such as C18 and C8. The pie electrons of the phenyl group can interact with the aromatic ring of an analyte to increase retention relative to less or non-aromatic analytes. Unique...

  • Image of Reversed-Phase Phenyl-Hexyl Columns

    Separation Methods Technologies

    SMT Phenyl-Hexyl column or PhenH column, like the other SMT Phenyl columns, provides unique selectivity for aro- matic compounds when compared to other reversed-phase packings such as C18 and C8. The ìÛ-electrons of the phe- nyl group can interact with the aromatic ring of an analyte...

  • Image of Reversed-Phase C3 Columns

    Separation Methods Technologies

    SMT SAM-C3 columns consist of Propyl as the functional ligand. The columns offer selectivities that are different from C8 and C18 reversed-phase columns when applied to separation of polyaromatic hydrocarbons. SMT-C3 columns are specially designed as complementary alternatives for the separation...

  • Image of Normal Phase Silica Columns

    Separation Methods Technologies

    When silica is used as the stationary phase, the functional groups involved in separation are the surface silanols. However, metal impurities in silica may provide additional sites of interaction for solutes of interest. SMT uses high purity silica packing materials that are available in variety of...

  • Image of Ion-Exchange SAX Columns

    Separation Methods Technologies

    SMT-SAX columns are silica-based Strong Anion eXchange packing developed for separation of anionic compounds. SMT-SAX packings consist of chemically attached hydrophilic surface derivatized to form quaternary amine. The technique of SAM is used in the bonding process to significantly increase the...

  • Image of Ion-Exchange SCX Columns

    Separation Methods Technologies

    SMT-SCX columns are silica-based Strong Cation eXchange packing materials developed for separation of cationic compounds. SMT-SCX consists of chemically attached hydrophilic surface derivatized to form sulfonic acid functionality. The technique of SAM is used in the bonding process to significantly...

  • Image of SEC/GPC Columns

    Separation Methods Technologies

    SMTgel (silica-based) columns are specialty SMT columns designed for specific applications including gel permeation (GPC), ion exchange, reversed phase, hydrophobic interaction, hydrophilic interaction, and affinity chromatography. The packing materials feature modified surface chemistry designed...

  • Image of Specialty C30 Columns

    Separation Methods Technologies

    SMT-C30 columns consist of Triacontyl as the functional ligand. The columns offer selectivities that are much different from C18 reversed-phase columns when applied to separation of carotenoid and related compounds. Carotenoids consist of very diverse groups of molecules that include nonpolar...

  • Image of Specialty TNT Columns

    Separation Methods Technologies

    SMT-TNT columns are specially designed C18 column for use in the reversed-phase separation of nitroaromatic and nitroamine derivatives. The isomeric nature of these explosive compounds is the reason for the difficulty in their separation. The standard test method for the analysis of seven...

  • Image of Specialty Urea Columns

    Separation Methods Technologies

    SMT Urea columns consist of proprietary hydrophilic molecule as the functional ligand. The columns offer water-soluble functionality and selectivities that are different from other reversed-phase or normal phase columns when applied to separation of polar and basic compounds. SMT-Urea columns are...

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