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Filtered Search Results
Mac-Mod Princeton Cyano (CN) 60 Å, 10 µm, 21.2 x 50 mm SFC Column
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Princeton Chromatography Achiral SFC columns are designed and manufactured in the US, well known for innovating novel and robust workhorse phase chemistries, for the analysis of achiral SFC applications. Princeton designs myriad phase chemistries to improve the selectivity and efficiency of SFC analysis. Known for originally innovating the 2-EP phase chemistry, explore what Princeton has to offer. Columns are available from analytical to preparative sizes and are available in a wide range of pore sizes, particle sizes, column ID's and lengths. If you do not see something that you want, please just ask!
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Sepax Technologies Inc Sepax HPLC Column Bio-C18, 5 µm, 200 Å, 21.2 x 100 mm
Wide range of pore sizes and high compatibility with 100% aqueous phases make Bio-C18 columns ideal for high resolution mapping of peptides and separation of natural and synthetic peptides and small proteins. The specially designed surface bonding chemistry and the pore sizes allow for extended retention and selectivity for polar and hydrophilic compounds, such as peptides and amino acids. C18 monolayer formed by special bonding chemistry does not collapse in pure aqueous solution.
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Waters Corp Torus DEA OBD Prep Column, 130Å, 5 μm
This OBD Prep Column is engineered to facilitate the scaling of SuperCritical Fluid Chromatography (SFC) from analytical to preparative applications. Featuring DEA chemistry, this column provides a wide range of selectivity and is offered in a 5 μm preparative column format.
- Features DEA chemistry.
- Designed for SuperCritical Fluid (SFC) separation mode.
- Constructed with a hybrid particle substrate.
- Operates effectively up to 60°C.
- Withstands maximum pressure of 6000 psi (415 bar).
- Utilizes spherical particle shape.
- Features a particle size of 5 μm.
- Offers a pore size of 130Å.
- Provides a surface area of 185.
- Compatible with SFC preparative systems.
- Suitable for SFC and SFC/MS techniques.
- Has an inner diameter of 10 mm.
- Measures 250 mm in length.
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Waters Corp Torus 2-PIC OBD Prep Column, 130Å, 5 μm, 50 mm x 100 mm
Scale SFC from analytical to preparative with columns. Column chemistries (2-PIC, DIOL, DEA and 1-AA) offer a wide range of selectivity and are offered in 1.7 μm and 5 μm analytical and 5 μm preparative column formats.
- Chemistry: 2-PIC
- Separation mode: SuperCritical Fluid (SFC)
- Particle substrate: Hybrid
- Temperature limits: 60 °C
- Maximum pressure: 6000 psi (415 Bar)
- Endcapped: No
- Particle shape: Spherical
- Particle size: 5 μm
- Pore size: 130 Å
- Format: OBD Prep Column
- Surface area: 185
- System: SFC Preparative
- Technique: SFC, SFC/MS
- Inner diameter: 50 mm
- Length: 100 mm
- Units per package: 1 pk
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Waters Corp XTerra Shield RP18 OBD Prep Column, 125Å, 10 μm, 10 mm, 250 mm
XTerra Preparative RP18 columns are hybrid-based, reversed-phase C18 columns that utilize embedded polar group technology. These columns are designed to improve peak shape performance for highly basic compounds and offer superior pH stability compared to silica-based columns.
- Hybrid-based, reversed-phase C18 columns
- Incorporates embedded polar group technology
- Improves peak shape performance for highly basic compounds
- Provides superior pH stability compared to silica-based columns
- pH range of 2 to 12
- Can sustain up to a maximum pressure of 6000 psi (415 bar)
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Waters Corp CORTECS UPLC HILIC Column, 1.6 μm, 90 Å, 3.0 x 30 mm
The CORTECS UPLC HILIC Column, with 1.6 μm particle size and 90 Å pore size, is designed for high-efficiency separations. It provides excellent resolution, speed, and sensitivity for a wide array of compounds.
- Provide the highest column efficiencies when used with low-dispersive UPLC instrumentation.
- Produce sharper, narrower peaks compared to fully porous particles of similar size.
- Recommended for increased resolution, speed, and sensitivity.
- HILIC chemistry offers flexibility to rapidly separate a wide array of compounds.
- Available in seven unique CORTECS chemistries, including HILIC.
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Waters Corp Column, BEH130 C18, 3.5 μm, 75 μm x 150 mm
These nanoEase M/Z BEH130 C18 columns deliver optimal performance for nano- to micro-scale liquid chromatographic separations. Ideal for biomarker discovery and protein/peptide identification, they operate up to 15,000 psi (1,034 Bar) while effectively managing pressure fluctuations for superior longevity.
- Designed for optimal nano- to micro-scale liquid chromatographic separation.
- Supports biomarker discovery and protein/peptide identification and characterization.
- Withstands up to 15,000 psi (1,034 Bar) operating pressure.
- Ensures superior longevity by handling pressure fluctuations effectively.
- Equipped with a ZenFit connector for easy, fingertight, tool-free, and leak-free liquid connections.
- ZenFit fittings are compatible with V-Detail ports and Rheodyne/Vici compatible valves.
- Compatible with ACQUITY UPLC M-Class Systems.
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Waters Corp Column, Peptide CSH C18, 2.5 μm, 100 mm
This column features CSH130 C18 based particles with a low, carefully-defined concentration of positive charges, ensuring excellent peak shape for peptides with FA- or TFA-containing mobile phases. Its performance is largely independent of strong ion pairing agents, making it suitable for LC or LC-MS applications. Packed in ultra-low dispersion hardware, it provides exceptional separation performance, robustness, and high throughput for HPLC assays, and offers a smooth transition to UPLC adoption.
- Excellent peak shape for peptides using FA- or TFA-containing mobile phases due to controlled positive charges.
- Minimal dependence on strong ion pairing agents, ideal for LC or LC-MS applications.
- Ultra-low dispersion hardware for exceptional separation performance.
- Robustness and high throughput for HPLC assays.
- Seamless transition path toward UPLC adoption.
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Waters Corp OBD Prep Column, 2-PIC, 5 μm, 10 mm x 150 mm
Torus columns enable scaling SuperCritical Fluid (SFC) applications from analytical to preparative. These column chemistries, including 2-PIC, DIOL, DEA, and 1-AA, offer a broad range of selectivity in analytical (1.7 μm and 5 μm) and preparative (5 μm) formats.
- Chemistry: 2-PIC
- Separation mode: SFC
- Particle substrate: Hybrid
- Max temperature: 60 °C
- Max pressure: 6000 psi (415 bar)
- Endcapped: No
- Particle shape: Spherical
- Particle size: 5 μm
- Pore size: 130 Å
- Format: OBD prep column
- Surface area: 185
- System: SFC preparative
- Technique: SFC, SFC/MS
- Dimensions: 10 mm inner diameter, 150 mm length
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Waters Corp Atlantis VanGuard FIT Cartridge, Mixed-mode, 5 μm, 3.9 x 5 mm
These mixed-mode reversed-phase/anion-exchange guard cartridges are designed to protect the analytical column from matrix and sample contaminants. They prevent chemical contaminants and suspended particulates from entering the analytical column, extending its lifespan and dependability.
- Mixed-mode chemistry offers high retention for polar acidic analytes in reversed-phase conditions.
- Provides complementary selectivity to conventional C18 stationary phases.
- VanGuard FIT (Fast Installation Technology) cartridge design reduces dead volume and extends column longevity.
- Allows for easy and quick installation, improving workflow efficiency.
- Suitable for both analytical and preparative applications.
- Designed for use with both polar and nonpolar compounds due to balanced hydrophobicity and strong cation exchange functionality.
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Waters Corp Column, XBridge Glycan BEH Amide, 2.5 μm, 3 mm, 75 mm
The XBridge Glycan BEH Amide Column is designed for hydrophilic interaction (HILIC) separations, ideal for highly polar substances like carbohydrates and sugars. It features a stable, trifunctionally bonded amide phase and ethylene bridged hybrid (BEH) particle technology for adaptability across a wide pH range.
- Available in 1.7μm, 2.5μm XP, and 3.5μm particle sizes for UPLC and HPLC.
- Batch-to-batch consistency ensured by quality control testing with the 2-AB labeled Glycan Performance standard.
- Chemically stable, trifunctionally bonded amide phase maintains stability across a wide pH range.
- BEH particle technology provides exceptional stability and adaptability in HILIC separations.
- Shares selectivity with ACQUITY UPLC BEH Amide columns for easy separation transfer between HPLC and UPLC.
- Effectively separates very polar substances, including carbohydrates and sugars.
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Waters Corp Atlantis Method Validation Kit, BEH C18 AX, 1.7 μm, 2.1 × 150 mm
The method validation kit contains three columns, each packed with a different lot of material. The Atlantis Premier BEH C18 AX columns offer excellent retention for polar acidic analytes under reversed-phase conditions. The reversed-phase/anion-exchange mixed-mode chemistry is stable from pH 2-10 and provides complementary selectivity to traditional C18 stationary phases, which is beneficial for method development.
- Contains three columns, each packed with a different lot of material.
- Provides excellent retention for polar acidic analytes under reversed-phase conditions.
- Mixed-mode chemistry is stable from pH 2-10.
- Offers complementary selectivity to traditional C18 stationary phases.
- Beneficial for method development.
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Waters Corp XSelect Column, CSH C18, 3.5 μm, 4.6 x 250 mm
These general purpose C18 columns offer alternative selectivity for HPLC assays. Featuring Charged Surface Hybrid (CSH) technology for superior peak shape and MaxPeak High Performance Surface hardware to reduce analyte interactions, they provide exceptional separation performance and robustness.
- Provides alternative selectivity compared to other C18 sorbents.
- Charged Surface Hybrid (CSH) technology enables superior peak shape and increased loading capacity for basic compounds.
- Exceptional separation performance, robustness, and throughput for HPLC assays.
- Facilitates a seamless transition path toward UPLC adoption.
- MaxPeak High Performance Surface hardware reduces unwanted analyte/surface interactions, improving peak shape and signal intensity.
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Neta Scientific RX-C18 2.1X100MM 3.5UM
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This item is manufactured by Agilent
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YMC America, Inc Tri PFP 120A 1.9um 75x.5mm1/32
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YMC-Triart phases are based on organic/inorganic hybrid particles that combine the high mechanical stability and efficiency of a silica-based packing material with the robust chemical stability of a polymer-based packing material This versatile resin is produced using tightly controlled particle formation technology adapted from micro-reactor technology The resulting uniform particle and pore size distributions as well as the smooth surface greatly contribute to excellent peak shape and separation reproducibility In addition YMC-Triart materials are highly resilient and robust when used at extreme pH elevated temperature and high pressure
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