567532-U
Discovery® HS F5 (3 µm) HPLC Columns
L × I.D. 15 cm × 4 mm, HPLC Column
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CN¥8,931.71
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About This Item
CN¥8,931.71
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Product Name
Discovery® HS F5 HPLC Column, 3 μm particle size, L × I.D. 15 cm × 4 mm
material
stainless steel column
Agency
suitable for USP L43
product line
Discovery®
feature
endcapped
manufacturer/tradename
Discovery®
packaging
1 ea of
extent of labeling
12% Carbon loading
parameter
≤70 °C temp. range
400 bar pressure (5801 psi)
technique(s)
HPLC: suitable
LC/MS: suitable
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Related Categories
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This Item | 567531U | 567530U | 567501U |
---|---|---|---|
separation technique reversed phase | separation technique reversed phase | separation technique reversed phase | separation technique reversed phase |
matrix silica gel, high purity, spherical particle platform, fully porous particle | matrix silica gel, high purity, spherical particle platform, fully porous particle | matrix silica gel, high purity, spherical particle platform, fully porous particle | matrix silica gel, high purity, spherical particle platform, fully porous particle |
agency suitable for USP L43 | agency suitable for USP L43 | agency suitable for USP L43 | agency suitable for USP L43 |
pore size 120 Å | pore size 120 Å | pore size 120 Å | pore size 120 Å |
technique(s) HPLC: suitable, LC/MS: suitable | technique(s) HPLC: suitable, LC/MS: suitable | technique(s) HPLC: suitable, LC/MS: suitable | technique(s) HPLC: suitable, LC/MS: suitable |
General description
Generally, bases are retained longer on the HS F5 than on a C18. Increasing the organic content of a C18 separation 5 to 10 percent will generally provide similar retention on an HS F5. Results with other compounds are highly variable. However, it is generally true that solutes with log Po/w values less than 2.5 will be retained longer on HS F5 compared to a C18. The degree of difference is highly solute dependent.
Features and Benefits
- Unique selectivity
- Similar retention to C18 (sometimes requires stronger mobile phase)
- Excellent peak shape
- Stable, low-bleed LC-MS separations
- Scalable separations from 3 to 10μm particle sizes
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