Separations Products & Reviews

Separations is a fundamental scientific discipline focused on the isolation and purification of components from mixtures. Through techniques such as chromatography, distillation, and filtration, separations scientists separate substances based on their physical or chemical properties. This field plays a crucial role in various industries, including pharmaceuticals, food and beverage testing, environmental science, materials research, and more. Explore how separations techniques enable precise analysis, quality control, and the development of innovative products.

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3M™ Empore™ Carbon 90 mm Disk

3M Bioanalytical

Empore Carbon Disks are designed for the extraction of volatile, highly polar, and water soluble compounds from aqueous solutions.  The Empore Carbon Disk provides all the advantages of activated carbon in a compact and thin Empore Disk.

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3M™ Empore™ C8-SD Standard Well Plate

3M Bioanalytical

Functional groups, such as octyl (C8) and octadecyl (C18), can be bonded to the silica surface to provide non polar interactions.  Each of these sorbents exhibits unique properties of retention and selectivity for a particular analyte.  The choice of which sorbent is best for a particular method will be influenced by the percent recovery of analyte from the sample matrix and the cleanliness of the resulting chromatography.

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3M™ Empore™ C18-SD Standard Well Plate

3M Bioanalytical

Functional groups, such as octyl (C8) and octadecyl (C18), can be bonded to the silica surface to provide non polar interactions.  Each of these sorbents exhibits unique properties of retention and selectivity for a particular analyte.  The choice of which sorbent is best for a particular method will be influenced by the percent recovery of analyte from the sample matrix and the cleanliness of the resulting chromatography.

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3M™ Empore™ MPC-SD Standard Well Plate

3M Bioanalytical

This mixed phase chemistry, in which two primary modes of attraction are present, allows for a more efficient and selective extraction compared to traditional reversed phase techniques.  Neutral and ionized analytes can be simultaneously extracted from a complex mixture and eluted as separate fractions.  A mixed phase sorbent offers the following advantages: Eluting acidic and neutral analytes separately from basic analy…

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3M™ Empore™ C8-SD Deep Well Plate

3M Bioanalytical

Functional groups, such as octyl (C8) and octadecyl (C18), can be bonded to the silica surface to provide non polar interactions.  Each of these sorbents exhibits unique properties of retention and selectivity for a particular analyte.  The choice of which sorbent is best for a particular method will be influenced by the percent recovery of analyte from the sample matrix and the cleanliness of the resulting chromatography.

0.0/5.0
|0 Reviews

3M™ Empore™ C18-SD Deep Well Plate

3M Bioanalytical

Functional groups, such as octyl (C8) and octadecyl (C18), can be bonded to the silica surface to provide non polar interactions.  Each of these sorbents exhibits unique properties of retention and selectivity for a particular analyte.  The choice of which sorbent is best for a particular method will be influenced by the percent recovery of analyte from the sample matrix and the cleanliness of the resulting chromatography.

0.0/5.0
|0 Reviews

3M™ Empore™ MPC-SD Deep Well Plate

3M Bioanalytical

This mixed phase chemistry, in which two primary modes of attraction are present, allows for a more efficient and selective extraction compared to traditional reversed phase techniques.  Neutral and ionized analytes can be simultaneously extracted from a complex mixture and eluted as separate fractions. A mixed phase sorbent offers the following advantages: Eluting acidic and neutral analytes separately from basic analyt…

0.0/5.0
|0 Reviews