YMC-Triart C8 Hybrid Silica UHPLC Columns, C8, 1.9 µm, YMC America

Supplier: YMC America,Inc
TO12SP9-0302PT TO12SP9-0502PT TO12SP9-0503PT TO12SP9-1002PT TO12SP9-1003PT TO12SP9-L502PT TO12SP9-L503PT TO12SP9-0202PT TO12SP9-0303PT TO12SP9-0546PT TO12SP9-1502PT TO12SP9-1503PT TO12SP9-05Q1PTP TO12SP9-10Q1PTP TO12SP9-15Q1PTP TO12SP9-03Q1PT TO12SP9-05Q1PT TO12SP9-15Q1PT TO12SP9-L5Q1PT
89217-132EA 1556.58 USD
89217-132 89217-134 89217-136 89217-138 89217-140 89217-142 89217-144 10842-290 10842-292 10842-294 10842-296 10842-298 75995-142 75995-144 75995-146 76013-944 76013-946 76013-948 76013-950
YMC-Triart C8 Hybrid Silica UHPLC Columns, C8, 1.9 µm, YMC America
Chromatography Columns
YMC-Triart C8 is a novel organic/inorganic hybrid silica particle derivatized with C8 (L7 USP designation).

  • Suitable for UHPLC
  • Chemical and mechanical durability of the particles contributes to long column lifetime
  • Proprietary end capping makes for excellent peak shapes of all types of compounds
  • Rigorous manufacturing controls result in legendary YMC column-to-column and lot-to-lot reproducibility
  • More retentive than other hybrid materials, potentially simplifying the separation of 'difficult' peaks
  • YMC-Triart C8 is available in packed columns of various dimensions

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. In addition, these particles are very stable under mechanical stress such as high pressure. YMC-Triart C8 can be used at temperatures up to 70 °C at pH 1 to 7, and 50 °C from pH to 12.

C8 is an alternative to the more widely-used C18 chemistry, and is of lower hydrophobicity than C18. C8’s lesser retention may help shorten total analysis times in separations of compounds with large differences in hydrophobicity without requiring gradient elution.
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