Supelco® analytical products.
Accurate. Precise. Consistent.

MilliporeSigma’s comprehensive portfolio, developed by analytical chemists for analytical chemists, covers a broad range of analytical solutions, and every product is meticulously quality-controlled to maintain the integrity of your testing protocols.

Accuracy

We know only the most accurate analytical products will do. That’s why we offer the Supelco® portfolio of analytical products. Whatever your needs are, our portfolio is always fit for purpose, ensuring your results are accurate.

Precision

Supelco scientists are dedicated to your analytical applications. The expertise you need is always on hand to support you in achieving the precision and accuracy you require.

Consistency

Every product from the Supelco® portfolio is
meticulously quality-controlled to maintain the integrity of your testing protocols.

UHPLC/LC-MS Solvents and Blends

MilliporeSigma Advantages

For demanding UHPLC applications requiring minimal interferences, UHPLC-MS solvents from MilliporeSigma offer important advantages.

Ultra-High purity for extremely low detection limits and reproducable performance under any UHPLC detection mode:

  • Exclusive manufacturing and purification technology
  • Microfiltered (0.2um)
  • Minimal trace metals
  • Extremely low baseline impurities
  • Suitability tested by UHPLC-MS and UHPLC-MS TOF

Industry-leading packaging:

  • Proprietary anti-leaching bottle technology ensures long shelf life
  • Convenient, unique packaging options ranging from 100 mL to 4×4 L case.
Part List

 

Part #DescriptionSize
1027811000
2-Propanol Lichrosolv LC-MS
1L
1027812500
2-Propanol Lichrosolv LC-MS
2.5L
1027814000
2-Propanol Lichrosolv LC-MS
4L
1590042500
Acetonitrile + 0.1% Acetic Acid (v/v) Lichrosolv LC-MS
2.5L
1590044000
Acetonitrile + 0.1% Acetic Acid (v/v) Lichrosolv LC-MS
4L
14274-2L
Acetonitrile + 0.1% Ammonium Acetate UHPLC-MS
2L
1590021000
Acetonitrile + 0.1% Formic acid (v/v) Lichrosolv LC-MS
1L
1590022500
Acetonitrile + 0.1% Formic acid (v/v) Lichrosolv LC-MS
2.5L
1590024000
Acetonitrile + 0.1% Formic acid (v/v) Lichrosolv LC-MS
4L
900686-1L
Acetonitrile + 0.1% Formic acid (v/v) UHPLC-MS
1L
900686-6x1L
Acetonitrile + 0.1% Formic acid (v/v) UHPLC-MS
6x1L
900686-4x4L
Acetonitrile + 0.1% Formic acid (v/v) UHPLC-MS
4x4L
1590142500
Acetonitrile + 0.1% Trifluoroacetic acid (v/v) Lichrosolv LC-MS
2.5L
1590144000
Acetonitrile + 0.1% Trifluoroacetic acid (v/v) Lichrosolv LC-MS
4L
1000291000
Acetonitrile Lichrosolv LC-MS
1L
1000292500
Acetonitrile Lichrosolv LC-MS
2.5L
1000299010
Acetonitrile Lichrosolv LC-MS
10L
1000299030
Acetonitrile Lichrosolv LC-MS
30L
900667-100ML
Acetonitrile UHPLC-MS
100ml
900667-250ML
Acetonitrile UHPLC-MS
250ml
900667-1L
Acetonitrile UHPLC-MS
1L
900667-4x4L
Acetonitrile UHPLC-MS
4x4L
1036491000
Ethyl Acetate Lichrosolv LC-MS
1L
1036492500
Ethyl Acetate Lichrosolv LC-MS
2.5L
1036541000
Heptane Lichrosolv LC-MS
1L
1036542500
Heptane Lichrosolv LC-MS
2.5L
1037011000
Hexane Lichrosolv LC-MS
1L
1037012500
Hexane Lichrosolv LC-MS
2.5L
632546-4x4L
Methanol + 0.1% Formic acid (v/v) UHPLC-MS
4x4L
1060351000
Methanol Lichrosolv LC-MS
1L
1060352500
Methanol Lichrosolv LC-MS
2.5L
900688-1L
Methanol UHPLC-MS
1L
900688-6x1L
Methanol UHPLC-MS
6x1L
900688-4x4L
Methanol UHPLC-MS
4x4L
1590072500
Water + 0.1% Acetic acid (v/v) Lichrosolv LC-MS
2.5L
1590074000
Water + 0.1% Acetic acid (v/v) Lichrosolv LC-MS
4L
1590122500
Water + 0.1% Formic acid (v/v) Lichrosolv LC-MS
2.5L
1590134000
Water + 0.1% Formic acid (v/v) Lichrosolv LC-MS
4L
900687-1L
Water + 0.1% Formic acid (v/v) UHPLC-MS
1L
900687-4x4L
Water + 0.1% Formic acid (v/v) UHPLC-MS
4x4L
4801122500
Water + 0.1% Trifluoroacetic acid (v/v) Lichrosolv LC-MS
2.5L
4800124000
Water + 0.1% Trifluoroacetic acid (v/v) Lichrosolv LC-MS
4L
1153331000
Water Lichrosolv LC-MS
1L
1153332500
Water Lichrosolv LC-MS
2.5L
1153334000
Water Lichrosolv LC-MS
4L
1153339010
Water Lichrosolv LC-MS
10L
1153339030
Water Lichrosolv LC-MS
30L
900682-1L
Water UHPLC-MS
1L
900682-6x1L
Water UHPLC-MS
6X1L
900682-4x4L
Water UHPLC-MS
4x4L

We provide a premier selection of proven analytical tools and consumables to meet the requirements of scientists using the LC-MS technique for separation and analysis of drugs and biomolecules, or for analytical assays. Our comprehensive portfolio of columns, solvents, standards and sample preparation products are exclusively designed for LC-MS, meeting the critical need for purity. You can also find LC-MS applications and method development documentation containing practical recommendations for maximum system performance, along with an overview of our products available for both small molecule and large molecule pharmaceutical analysis using LC-MS.

Sample Collection

Sample Preparation

Standardization/Calibration

Chromatographic Separation and Analysis

Biorenewable solvents.
A simple switch.

Why should you have to choose between solvents that are ecological and those that are reliable? Enjoy both at once with our biorenewable and greener solutions. Thanks to their origin, they won’t compromise the environment.
And thanks to their high quality, they won’t compromise your work.

 

In addition to our familiar greener solvents, such as
water and ethanol, you also have the option of other
innovative solutions that are made from biological
sources, have higher recovery rates, or are safer for
handling and disposal. Many of them are based on nonfood,
biorenewable materials, so they don’t depend on
petroleum sources, or deplete food supplies.
Certain solvents are still essential for scientific work.

But, here too, we’re investing in promising research
to find optimal, safer alternatives for you. Explore our
latest range of greener and biorenewable solvents,
and see how your explorations go even further through
sustainability.

Prevention

It is better to prevent waste than to treat or clean up waste after it has been created.

Atom Economy

Synthetic methods should be designed to maximize the incorporation of all materials used in the process into the final product.

Less Hazardous Chemical Syntheses

Synthetic methods should be designed to maximize the incorporation of all materials used in the process into the final product.

Designing Safer Chemicals

Chemical products should be designed to affect their
desired
function while minimizing their toxicity.

Safer Solvents and Auxiliaries

Chemical products should be designed to affect their
desired
function while minimizing their toxicity.

Design for Energy Efficiency

Energy requirements of chemical processes should be recognized for their environmental and economic impacts and should be minimized. If possible, synthetic methods should be conducted at ambient temperature and pressure.

Use of Renewable Feedstocks

Energy requirements of chemical processes should be recognized for their environmental and economic impacts and should be minimized. If possible, synthetic methods should be conducted at ambient temperature and pressure.

Reduce Derivatives

Unnecessary derivatization (use of blocking groups, protection/ deprotection, temporary modification of physical/chemical processes) should be minimized or avoided if possible, because such steps require additional reagents and can generate waste.

Catalysis

Catalytic reagents (as selective as possible) are superior to stoichiometric reagents.

Design for Degradation

Catalytic reagents (as selective as possible) are superior to stoichiometric reagents.

Real-time analysis for Pollution Prevention

Catalytic reagents (as selective as possible) are superior to stoichiometric reagents.

Inherently Safer Chemistry for Accident Prevention

Substances and the form of a substance used in a chemical process should be chosen to minimize the potential for chemical accidents, including releases, explosions, and fires.

Promotion (For a limited time, special offer, etc)
Buy 4X4L of solvents, get a free box of Millex filters

additional instructions

MilliporeSigma has solutions for your entire LC-MS workflow – Sample Prep, Columns, and Standards

Available on GSA through Government Scientific Source

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