YMC-Triart C18 ExRS Hybrid Silica UHPLC Columns, C18 ExRS, 1.9 µm, YMC America

Supplier: YMC America,Inc
TAR08SP9-0503PT TAR08SP9-1502PT TAR08SP9-L503PT TAR08SP9-0302PT TAR08SP9-0502PT TAR08SP9-L502PT TAR08SP9-0202PT TAR08SP9-1002PT TAR08SP9-0303PT TAR08SP9-05Q1PTP TAR08SP9-10Q1PTP TAR08SP9-15Q1PTP TAR08SP9-1003PT TAR08SP9-10Q1PT TAR08SP9-1503PT
10661-972EA 1490.25 USD
10661-972 10661-978 10661-980 10661-982 10661-984 10661-986 10662-116 10662-118 10662-120 75995-030 75995-032 75995-034 76013-882 76013-884 76013-886
YMC-Triart C18 ExRS Hybrid Silica UHPLC Columns, C18 ExRS, 1.9 µm, YMC America
Chromatography Columns
YMC-Triart C18 ExRS, 1.9 µm columns are based on technology featuring an organic/inorganic hybrid silica particle that utilizes polymeric bonding end capping.

  • C18 phase bonded to organic/inorganic hybrid silica gel
  • Excellent selectivity of isomers and structural analogs
  • Superior chemical durability
  • Identical selectivity over particle sizes
  • Ideal for UHPLC

The core material for all of the YMC-Triart products, the particle, is inspired by YMC's flow chemistry technology. Inherent in YMC’s process is a high level of temperature and particle formation control. As a result, Triart particles are consistent, reproducible, and scalable across many particle sizes. The hybrid Triart particles produce a material that is highly resilient and robust when used at extreme pH and elevated temperature. These particles are very stable under mechanical stress such as high pressure. YMC-Triart C18 ExRS can be used at temperatures up to 70 °C at pH 1 to 7, and 50 °C from pH 7 to 12.

In the case of Triart ExRS, hydrophobicity is high due to the high carbon loading (25%). Triart ExRS suitable for use with separation of isomers and structural analogs.
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