Used WATERS / MICROMASS XEVO TQ-MS #293603628 for sale

ID: 293603628
LC / MS / MS System.
WATERS / MICROMASS XEVO TQ-MS is an extremely sensitive and reliable hybrid quadrupole-time-of-flight mass spectrometer. It is one of the most powerful tools available for the analysis of complex mixtures of compounds. WATERS XEVO TQ-MS is a high-performance, triple quadrupole-time-of-flight mass spectrometer. This state-of-the-art instrument has an ion source that is capable of generating ions in almost any format, including positive, negative, or even protonated and deprotonated ions. This facilitates the fashion in which complex molecules can be analyzed, providing better resolution and reproducible data. The first quadrupole (Q1) of MICROMASS XEVO TQ-MS acts as an ion guide and is used to direct and filter the ions as they enter the second quadrupole, also known as a collision cell (Q2). The high-field lenses present in the lens stack of the collision cell are responsible for the shift of the ions of interest along the analyzer, maximizing sensitivity and resolution. The third quadrupole, known as a detector cell (Q3), is the key component of the instrument's time-of-flight (TOF) detector. Its function is to detect and measure the ions, which are sampled and counted one at a time due to the pulsed nature of the TOF mass spectrometer. The high-resolution mass analyzer of XEVO TQ-MS provides great accuracy, with the analysis accuracies ranging from low ppm up to parts-per-quintillion. This makes the instrument highly suitable for both confirmational and quantification purposes. Additionally, WATERS / MICROMASS XEVO TQ-MS provides excellent spectral quality and reproducibility, thanks to its data optimal resolution and dynamic range capabilities. Utilizing the advanced Turbo V source technology and a wide range of optimized ion optics, compound chromatograms can easily be visualized and analyzed on the TQ-MS software. The extremely reliable and versatile WATERS XEVO TQ-MS is a powerful and sensitive instrument for the analysis of complex molecules. It has been used for a wide range of applications, from routine screening analyses to more detailed structural characterization.
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