by Advanced Materials Technology
Separations on the RP-Amide bonded phase are influenced by both
moderately strong hydrophobic binding interaction and hydrogen
bonding with the embedded amide group. Analytes with hydrogen
bond donor characteristics will likely be more retained on the RP-Amide
phase than on the C18 phase. In general, acids will be retained more,
bases will be retained slightly less, and neutral analytes will be retained
about the same as on a C18 phase.
| Vendor | Advanced Materials Technology | Max Pressure | 9000 |
| Brand | Halo RP-Amide | Surface Area | 90 |
| Modifification | Silica/Amide | Carbon Load, % | 8.2 |
| Mode | Reversed-Phase | Endcapped | Yes |
| Particle Size | Operating Temperature | 60 | |
| Length | pH stability from | 2.0 | |
| Internal Diameter | pH stability to | 9.0 | |
| Pore size | 90 |
| Vendor | Brand | Mode | Modification | Int. diam. | Length | Particles | Pores | Price |
|---|---|---|---|---|---|---|---|---|
| PerkinElmer | Brownlee SPP RP-Amide | Reversed-Phase | Silica/Amide | 2.1 mm | 50 mm | 2.7 μm | — | On request |
| Advanced Materials Technology | Halo RP-Amide | Reversed-Phase | Silica/Amide | 2.1 mm | 30 mm | 2.7 μm | 90 Å | On request |
| Advanced Materials Technology | Halo RP-Amide | Reversed-Phase | Silica/Amide | 4.6 mm | 75 mm | 2.7 μm | 90 Å | On request |
| Advanced Materials Technology | Halo RP-Amide | Reversed-Phase | Silica/Amide | 2.1 mm | 20 mm | 2.7 μm | 90 Å | On request |
| Advanced Materials Technology | Halo RP-Amide | Reversed-Phase | Silica/Amide | 3.0 mm | 50 mm | 2.7 μm | 90 Å | On request |
| PerkinElmer | Brownlee SPP RP-Amide | Reversed-Phase | Silica/Amide | 4.6 mm | 100 mm | 2.7 μm | — | On request |
| Advanced Materials Technology | Halo RP-Amide | Reversed-Phase | Silica/Amide | 3.0 mm | 30 mm | 2.7 μm | 90 Å | On request |
| Advanced Materials Technology | Halo RP-Amide | Reversed-Phase | Silica/Amide | 4.6 mm | 30 mm | 2.7 μm | 90 Å | On request |
No customer reviews yet. Be the first to share your experience!