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Thermo Scientific™ Vanquish™ Flex Binary UHPLC System

Thermo Fisher ScientificIQLAAAGABHFAPUMBJCAvailable: Worldwide

The Thermo Scientific™ Vanquish™ Flex Binary UHPLC system is biocompatible with a state-of-the-art binary high-pressure pump and state-of-the-art binary solvent blending. This ultra high performance liquid chromatography system shares all Vanquish values, such as a design focused on uptime, robustness and reliability.

Thermo Fisher Scientific

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Reviews

Average Rating 4.7

|2Scientists have reviewed this product

Ease of Use
After Sales Service
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Great looking versatile UHPLC

 

Average Rating 4.3

Application Area:

Testing relative substances in peptide API

The Vanquish UHPLC system is a state of the platform. The equipment can be used in tandem with other Thermo and non-Thermo detectors such as UV and CAD. The system can also be used as a base of LC for LC-MS and SEC-MALS systems. The equipment is easy to use. Looks a little fancy but inside is very simple. The after sales care is reasonable most of the time. Sometimes it takes longer due to availability of the right engineer. However, having a long-standing relationship makes it easier. The systems are expensive compared to other competitors but the ease of use and seamless integration with Chromeleon CDS makes it a preferred choice.

Review Date: 10 Nov 2020 | Thermo Fisher Scientific

Reliable results

 

Average Rating 5.0

Application Area:

Analysis of products

Ease of use and achieves a great separation during analysis which gives transparent/actual results

Review Date: 8 Apr 2019 | Thermo Fisher Scientific

The Thermo Scientific™ Vanquish™ Flex Binary UHPLC system is biocompatible with a state-of-the-art binary high-pressure pump and state-of-the-art binary solvent blending. This ultra high performance liquid chromatography system shares all Vanquish values, such as a design focused on uptime, robustness and reliability.

Application NoteEnvironmental

Direct injection of drinking water for the analysis of 54 PFAS compounds by LC-MS/MS

Per- and polyfluoroalkyl substances (PFAS) are a large, diverse group of synthetic compounds containing chains of linked carbon and fluorine atoms, and environmental exposure to PFAS has been linked to a variety of health issues in humans. To evaluate the health risk, an expanding list of governmental regulatory agencies have established validated methods stating the quantitative levels for individual or collective PFAS. Thermo Fisher Scientific aims to demonstrate the quantitative measurement of 54 PFAS compounds in water samples by direct injection with precision and accuracy that meets current European regulatory reporting requirements.


Application NoteEnvironmental

Direct analysis of selected PFAS in ground, surface, and waste water by LC-MS/MS

There is documented evidence that exposure to per- and polyfluoroalkyl substances (PFAS) can lead to adverse health outcomes in humans, with studies showing that perfluorooctanoic acid (PFOA) and perfluorooctane sulfonate (PFOS) can cause reproductive and developmental, liver and kidney, and immunological effects in laboratory animals. Thermo Fisher Scientific describes a direct analysis method for the determination of a list of 24 PFAS in a wide variety of non-drinking water matrices. The data was used for the validation of a new method, EPA 8327, for a wide variety of water matrices as part of an interlaboratory study sponsored by the EPA Office of Water.


Application eBookFood and Beverage

Analytical methods for veterinary drug residue testing in meat and dairy products

Food safety is of paramount importance to public health, and animal products destined for human consumption are closely monitored by global food agencies to ensure that Maximum Residue Limits (MRLs) are not exceeded.

In this veterinary drug residue testing eBook, we consider the Thermo Fisher Scientific suite of LC-MS/MS technologies and their add-ons through a range of case studies demonstrating their use in meat and milk veterinary drug residue testing. We will explore how these analytical methods can tackle specific groups of compounds or high-throughput simultaneous screening of multiple residues, overcoming muscle matrix problems and improving Limits of Quantification (LOQs).




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