by CERI
In 1990, L-column ODS was introduced as a column whose secondary interaction with the residual silanol groups was eliminated by a new end-capping method* using high-temperature silylation. At the time, the performance of L-column ODS was far superior to that of existing C18 columns, and it became a pioneer of the new-generation end-capping method.
| Vendor | CERI | Pore size | 120 |
| Brand | L-column ODS | Surface Area | 340 |
| Modifification | Silica/C18 | Carbon Load, % | 17.0 |
| Mode | Reversed-Phase | Endcapped | Yes |
| Particle Size | pH stability from | 2.0 | |
| Length | pH stability to | 9.0 | |
| Internal Diameter |
| Vendor | Brand | Mode | Modification | Int. diam. | Length | Particles | Pores | Price |
|---|---|---|---|---|---|---|---|---|
| GL Sciences | Inertsil ODS-SP | Reversed-Phase | Silica/C18 | 4.0 mm | 20 mm | 5.0 μm | 100 Å | On request |
| ES Industries | Chromegabond 100 C18 | Reversed-Phase | Silica/C18 | 4.6 mm | 250 mm | 10.0 μm | 100 Å | On request |
| WATERS | Spherisorb ODS2 | Reversed-Phase | Silica/C18 | 3.0 mm | 125 mm | 5.0 μm | 80 Å | On request |
| Agilent Technologies | ZORBAX Eclipse XDB | Reversed-Phase | Silica/C18 | 2.0 mm | 100 mm | 3.5 μm | 80 Å | On request |
| Merck | Superspher® | Reversed-Phase | Silica/C18 | 2.0 mm | 125 mm | 4.0 μm | 100 Å | On request |
| Imtakt | Cadenza CW-C18 | Reversed-Phase | Silica/C18 | 10.0 mm | 150 mm | 3.0 μm | 300 Å | On request |
| Welch Materials | Ultisil AQ-C18 | Reversed-Phase | Silica/C18 | 3.0 mm | 150 mm | 3.0 μm | 120 Å | On request |
| ES Industries | Chromegabond 100 C18 | Reversed-Phase | Silica/C18 | 4.0 mm | 250 mm | 5.0 μm | 100 Å | On request |
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