Chemistry |
C18 |
Separation Mode |
Reversed Phase |
Particle Substrate |
Silica |
pH Range Min |
2 pH |
pH Range Max |
8 pH |
Temperature Limits |
45 C |
Maximum Pressure |
18000 psi (1240 Bar) |
Endcapped |
No |
Bonding Technology |
C18 SB |
Silanol Activity |
High |
Particle Shape |
Spherical |
Particle Size |
1.8 µm |
Endfitting Type |
Parker-style |
Pore Size |
100 Å |
Format |
Method Validation Kit |
Surface Area |
230 |
System |
UPLC, UHPLC |
Particle Technology |
HSS |
USP Classification |
L1 |
Inner Diameter |
2.1 mm |
Length |
150 mm |
Carbon Load |
8.5 % |
eCord |
Yes |
UNSPSC |
41115709 |
Brand |
ACQUITY UPLC |
Product Type |
Column Kits |
Units per Package |
3 pk |
ACQUITY UPLC HSS C18 SB Method Validation Kit, 100Å, 1.8 µm, 2.1 mm X 150 mm, 3/pk
Three ACQUITY UPLC HSS C18 SB columns, each filled with three separate batches of sorbent, make up the Method Validation Kit for the HSS C18 SB. In comparison to ACQUITY UPLC BEH C18 columns, the ACQUITY UPLC HSS C18 chemistry offers superior peak shape for bases, increased retention, and exceptionally long column lives at low pH. Fully scalable and adaptable to HPLC separations are ACQUITY HSS C18 columns.
Gain alternative selectivity for compounds affected by silano-philic interactions by utilizing the novel non-end-capped, low-coverage silica-based C18 chemistry of the ACQUITY UPLC HSS C18 SB Column. The lab apparatus has a specific increased silanol activity as a result of secondary interactions with leftover silanols, which increases the retention of fundamental chemicals. This happens as ionic repulsion and poor ligand density reduce non-basic analyte retention. The distinct mix of retention properties found in the ACQUITY UPLC HSS C18 SB Column makes it an effective method development tool for introducing changes in Selectivity for Bases (SB) while generating outstanding peak shape.
The Waters HSS (High Strength Silica) particle technology, which was developed to withstand UPLC pressures utilizing a mechanically tolerant, silica-based material, is used in the ACQUITY UPLC BEH C18 Columns of the MVK. The Waters HSS (High Strength Silica) is a revolutionary synthetic technique that uses particle technology to dramatically improve silica's mechanical stability while keeping pore volumes that are equivalent to those of HPLC silica-based materials. The final product is able to give you greater retentivity compared to hybrid particle technology, and the HSS serves as the ideal substrate to generate stationary phases that offer alternate selectivity.
Minimize the possibility of method variation brought on by irregularities in batches or columns of chromatographic medium. Because it was designed to provide trustworthy and reproducible results, you can count on the ACQUITY UPLC HSS C18 SB Columns to produce consistent results year after year. Visit our website or look through our comprehensive catalog of products. The website enables you to shop for lab equipment, as well as to reach out with any queries you may have.
You may also be interested in ACQUITY UPLC HSS C18 SB VanGuard Pre-column, 100Å, 1.8 µm, 2.1 mm X 5 mm, 3/pk; ACQUITY UPLC HSS C18 SB columns are used for low pH separations that contain complex mixtures of basic and non-basic compounds. The VanGuard pre-column connects directly to the inlet of the ACQUITY UPLC column, which minimizes extra column volumes and reduces leaking by eliminating additional connections.
Why Can Only Cations Be Found in Mass Spectrometry?
When employing mass spectrometry to determine the mass of charged particles, only ions are detectable and identifiable, while neutral molecules do not yield measurable results.