Chemistry |
PFP/Fluoro-Phenyl |
Separation Mode |
Reversed Phase |
Particle Substrate |
Hybrid |
pH Range Min |
1 pH |
pH Range Max |
8 pH |
Maximum Pressure |
18000 psi (1240 Bar) |
Endcapped |
No |
Bonding Technology |
Fluoro-Phenyl |
Silanol Activity |
Low |
Particle Shape |
Spherical |
Particle Size |
1.7 µm |
Endfitting Type |
Parker-style |
Pore Size |
130 Å |
Format |
Column |
Surface Area |
185 |
System |
UHPLC, UPLC |
Particle Technology |
CSH |
USP Classification |
L43 |
Inner Diameter |
2.1 mm |
Length |
150 mm |
Carbon Load |
10 % |
eCord |
Yes |
UNSPSC |
41115709 |
Brand |
ACQUITY UPLC |
Product Type |
Columns |
Units per Package |
1 pk |
ACQUITY UPLC CSH Fluoro-Phenyl Column , 130Å, 1.7 µm, 2.1 mm X 150 mm, 1/pk
The acquity UPLC CSH Fluoro-Phenyl Column is a top of the line highly innovative liquid chromatography column designed for superior stability in low pH ranges. It provides you with incredible peak shape, increased loading capacity, rapid equilibration, and superior batch to batch reproducibility. Designed to maximize selectivity differences, the ACQUITY CSH Fluoro-Phenyl column provides maximum method development freedom.The non-endcapped sorbent provides you with enhanced retention of acidic compounds in a pH range of 1-8.
Our cutting edge Charged Surface Hybrid technology makes this column some of the highest quality for lab equipment you can buy. This innovative technology works by applying a low-level controlled surface charge to ethylene bridged unbonded hybrid BEH particles and functionalizing with the right bonded phase chemistry.
The use of pure silica in the stationary phase allows for better peak shape in basic compounds. Additionally this technology optimizes pore properties and bonded phase coverage to provide excellent polar compound retention and seamless aqueous mobile phase compatibility. CSH technology drastically improves nearly every aspect of liquid chromatography performance for acidic and low ionic strength mobile phases which are commonly analyzed in most labs.
This column also utilized hybrid particle technology designed for sub 2 𝜇m particles which enables this column to use the innovative Acquity UPLC system. Separation scientists across a variety of industries have realized the astronomical value provided by the efficiency and resolution of Acquity UPLC columns equipt with Charged Surface Hybrid technology. Our incredibly durable UPLC technology enables this column to handle a staggering 18000 PSI.
Your Acquity UPLC CSH Fluoro-Phenyl Column is an incredibly versatile and valuable piece of equipment. If you are looking to maximize your selectivity differences, eliminate any chance of leaks, and protect your Column from harmful contaminants you may be interested in the ACQUITY UPLC CSH Fluoro-Phenyl VanGuard Pre-column. This Pre-Column will fit seamlessly with your Acquity UPLC CSH Fluoro-Phenyl and ensure peak performance and maximize the lifetime of your column.
How do Acquity Columns create selectivity?
Attaining the best peak shape possible in a separation is of the utmost importance in liquid chromatography. Selectivity can be influenced by the use of pH, organic modifier, or stationary phase. Waters uses several methods of differentiating selectivities between column chemistries. The primary means by which we do this is the selectivity value or S-Value. The S-Value shows how similar or different the selectivity of two different columns are under certain controlled conditions. This value is derived by measuring the retention factors of different analytes run on two columns under identical conditions. Higher S Values suggest higher levels of orthogonality.