File:Discovery_of_neon_isotopes.JPG · Wikimedia Commons · See Wikimedia Commons
mass spectrometry
Sign in to saveAlso known as mass spectroscopy, mass spec, mass spectrography
analytical technique based on determining mass to charge ratio of ions
Mass spectrometry is a scientific technique that identifies what substances are made of by measuring how heavy their charged particles are and how much electric charge they carry. It matters because it allows scientists to precisely determine the composition of materials, making it valuable for everything from drug testing to environmental monitoring.
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Research
507,777 papers- Mass spectrometry and protein analysis.ReviewScience (New York, N.Y.) · 2006Domon B, Aebersold RDOI: 10.1126/science.1124619
- HIGH RESOLUTION MASS SPECTROMETRY IN LIPIDOMICS.ReviewMass spectrometry reviews · 2021Züllig T, Köfeler HCDOI: 10.1002/mas.21627
- Mass Spectrometry Imaging of Cholesterol.ReviewAdvances in experimental medicine and biology · 2019Cologna SMDOI: 10.1007/978-3-030-04278-3_7
- Mass Spectrometry in Covalent Drug Discovery.Current molecular pharmacology · 2024Liu C, Wen XDOI: 10.2174/0118761429319065240605104628
- MASS SPECTROMETRY ANALYSIS OF DRUGS OF ABUSE: CHALLENGES AND EMERGING STRATEGIES.ReviewMass spectrometry reviews · 2020Borden SA, Palaty J, Termopoli V et al.DOI: 10.1002/mas.21624
- Immunocapture mass spectrometry: macroscopic history, recent trends and future prospects.ReviewBioanalysis · 2024Niwa MDOI: 10.1080/17576180.2024.2413277
- Clinical Mass Spectrometry Approaches to Myeloma and Amyloidosis.ReviewClinics in laboratory medicine · 2021Murray DL, Dasari SDOI: 10.1016/j.cll.2021.03.003
- Mass spectrometry. Preface.Analytica chimica acta · 2008Lubman DM, Limbach PADOI: 10.1016/j.aca.2008.08.007
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Encyclopedic overview
Mass spectrometry (MS) is an analytical technique that is used to measure the mass-to-charge ratio of ions. The results are presented as a mass spectrum, a plot of intensity as a function of the mass-to-charge ratio. These spectra are used to determine the elemental or isotopic signature of a sample, the masses of particles and of molecules, and to elucidate the chemical identity or structure of molecules and other chemical compounds. Mass spectrometry is used in many different fields and is applied to pure samples as well as complex mixtures.
Discovery of neon isotopes In a typical MS procedure, a sample, which may be solid, liquid, or gaseous, is ionized, for example by bombarding it with a beam of electrons. This may cause some of the sample's molecules to break up into positively charged fragments or simply become positively charged without fragmenting. These ions (fragments) are then separated according to their mass-to-charge ratio, for example by accelerating them and subjecting them to an electric or magnetic field: ions of the same mass-to-charge ratio will undergo the same amount of deflection. The ions are detected by a mechanism capable of detecting charged particles, such as an electron multiplier. Results are displayed as spectra of the signal intensity of detected ions as a function of the mass-to-charge ratio. The atoms or molecules in the sample can be identified by correlating known masses (e.g. an entire molecule) to the identified masses or through a characteristic fragmentation pattern.
Excerpted from Wikipedia’s “mass spectrometry” article, available under the CC BY-SA 4.0 licence.
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