by RESTEK
Viva columns are based on a wide pore material we designed for optimal large-molecule separations. In developing Viva silica, we found that although many commercial wide-pore silicas meet the standard 300 Å mean pore size, most have very broad distributions about this mean, with a significant portion of their pore volume falling below 150 Å. This means a large portion of the surface area is unavailable to larger molecules. Viva columns have a narrow distribution around the mean pore size, permitting a larger portion of the silica surface to play a role in the separation.
| Vendor | RESTEK | Pore size | 300 |
| Brand | Viva | Carbon Load, % | 5.0 |
| Modifification | Silica/C8 | Endcapped | Yes |
| Mode | Reversed-Phase | Operating Temperature | 80 |
| Particle Size | pH stability from | 2.5 | |
| Length | pH stability to | 8.0 | |
| Internal Diameter |
| Vendor | Brand | Mode | Modification | Int. diam. | Length | Particles | Pores | Price |
|---|---|---|---|---|---|---|---|---|
| ES Industries | Chromegabond 100 ProTec C8 | Reversed-Phase | Silica/C8 | 4.0 mm | 100 mm | 5.0 μm | 100 Å | On request |
| Bonna-Agela Technologies | Venusil XBP C8 | Reversed-Phase | Silica/C8 | 2.1 mm | 150 mm | 3.0 μm | 100 Å | On request |
| KYA Technologies Corporation | HiQ Sil C8-120 | Reversed-Phase | Silica/C8 | 4.6 mm | 50 mm | 3.0 μm | 120 Å | On request |
| MACHEREY-NAGEL | NUCLEODUR C8 EC | Reversed-Phase | Silica/C8 | 3.0 mm | 250 mm | 5.0 μm | 110 Å | 291.00 |
| GL Sciences | Inertsil C8-3 | Reversed-Phase | Silica/C8 | 2.1 mm | 75 mm | 2.0 μm | 100 Å | On request |
| Bonna-Agela Technologies | Venusil XBP C8(L) | Reversed-Phase | Silica/C8 | 2.1 mm | 50 mm | 5.0 μm | 150 Å | On request |
| Chromenta | Chromenta KB C8 | Reversed-Phase | Silica/C8 | 4.6 mm | 50 mm | 1.8 μm | 120 Å | On request |
| Imtakt | Unison US-C8 | Reversed-Phase | Silica/C8 | 0.2 mm | 150 mm | 5.0 μm | 130 Å | On request |
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