by GL Sciences
Inertsil C8-4
The Most Deactivated C8 Column Ever Made
GL Sciences’ newly-developed chemical bonding technology allows Inertsil C8-4 to provide high efficiency and good peak shape where competitive columns fail. For example, in the example at right, Inertsil C8-4 is compared with competitive Octyl phases for the analysis of dextromethorphan, a basic compound. Where other columns show poor peak shape, often with secondary interactions that result in prolonged retention, Inertsil C8-4 delivers symmetric peaks with high efficiency.
Benefits and Features
| Vendor | GL Sciences | Max Pressure | 2900 |
| Brand | Inertsil C8-4 | Surface Area | 450 |
| Modifification | Silica/C8 | Carbon Load, % | 5.0 |
| Mode | Reversed-Phase | Endcapped | Yes |
| Particle Size | Operating Temperature | 60 | |
| Length | pH stability from | 2.0 | |
| Internal Diameter | pH stability to | 7.5 | |
| Pore size | 100 |
| Vendor | Brand | Mode | Modification | Int. diam. | Length | Particles | Pores | Price |
|---|---|---|---|---|---|---|---|---|
| Chromenta | Chromenta KB C8 | Reversed-Phase | Silica/C8 | 3.0 mm | 100 mm | 3.0 μm | 120 Å | On request |
| Luknova | Poro C8-300 | Reversed-Phase | Silica/C8 | 21.2 mm | 150 mm | 10.0 μm | 300 Å | On request |
| Advanced Materials Technology | Halo C8 | Reversed-Phase | Silica/C8 | 4.6 mm | 150 mm | 2.7 μm | 90 Å | On request |
| LabHut | Cronusil-L C8 | Reversed-Phase | Silica/C8 | 4.0 mm | 100 mm | 5.0 μm | 300 Å | 203.31 |
| Agilent Technologies | Agilent Pursuit | Reversed-Phase | Silica/C8 | 4.0 mm | 50 mm | 5.0 μm | 180 Å | On request |
| Higgins Analytical | HAISIL 100 C8 | Reversed-Phase | Silica/C8 | 3.0 mm | 250 mm | 5.0 μm | 100 Å | On request |
| ES Industries | Chromegabond 120 WR C8 | Reversed-Phase | Silica/C8 | 4.0 mm | 150 mm | 5.0 μm | 120 Å | On request |
| Dikma Technologies Inc. | Inspire C8 | Reversed-Phase | Silica/C8 | 4.6 mm | 250 mm | 10.0 μm | 100 Å | 383.00 |
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