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ELEMENT™ Series ICP-MS Page 1 of 2
Spectroscopy & Elemental Analysis Instruments & Equipment › Other Spectroscopy & Elemental Analysis Instruments › ELEMENT™ Series ICP-MS
ELEMENT™ Series ICP-MS
Thermo Scientific™ Related applications: Industrial Mass Spectrometry
Choose from two high performance, double focusing magnetic sector field Thermo Scientific™
ELEMENT™ Series ICP-MS instruments that are optimized for ease-of-use, stability and
productivity. The ELEMENT 2™ ICP-MS features powerful techniques that solve specific
problems, combined with excellent sensitivity and signal-to-noise ratio. The Thermo Scientific
ELEMENT XR™ ICP-MS extends the linear dynamic range of the ELEMENT 2 ICP-MS by an
additional three orders of magnitude using a Faraday detector combined with the dual mode
SEM detector.
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Catalog number Product Size Description Price (NOK)
IQLAAEGAAMFABWMAFC - ELEMENT 2 Request A Quote
Full specifications
IQLAAEGAAMFABWMAFB - ELEMENT XR Request A Quote
Full specifications
Description
ICP-MS is the most powerful technique for the quantification of trace elements. The most severe limitation of ICP-MS is
polyatomic interference with elemental signals. High mass resolution is the gold standard for the elimination of these
interferences, enabling accurate and reliable quantitative multi-element analyses at trace levels, even with minimal sample
preparation.
Multi-elemental Analysis
• A multi-elemental detector with the speed to handle transient signals including HPLC, GC and laser ablation.
• Interference-free measurement across the periodic table covers matrix components (mg·L-1) to ultratrace element levels
(sub pg·L-1).
• Highest sensitivity ICP-MS (at low resolution).
Flexibility and Accessibility
• High mass resolution to access spectrally interfered isotopes and generate unambiguous elemental spectra.
• High precision isotope ratios on non-interfered or interfered isotopes.
• Hot and cold plasma conditions.
ELEMENT XR ICP-MS
Wide linear dynamic detection range is of immense importance in ICP-MS because it allows a wide range of concentrations to be
analyzed in a single run.
Integrated Faraday Detector features:
• Sample times as low as 1ms.
• No decay time required after the measurement of high intensities.
• Automatic switching between SEM and Faraday with delay times <1ms.
• Wide crossover ranges (>2 orders of magnitude) between different detector modes allow accurate, automated cross-
calibration.
• Dynamic range from 0.2cps (SEM) to >1 x 1012cps (Faraday).
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ELEMENT™ Series ICP-MS Page 2 of 2
Documents
Product literature Scientific posters
Application Note: Analysis of Non-Conductive Solid Samples by Laser Ablation A New GC Interface for Sector Field ICP-MS
Interfaced with Extended Dynamic Range HR-ICP-MS Expanding the Detectable Nanoparticle Size Range by High Resolution ICP-MS
Application Note: Analysis of Semiconductor Grade Mineral Acids by Sector U-Pb Isotope Ratio Analysis of Zircons by Laser Ablation Coupled to Single
Field ICP-MS Collector Sector Field ICP-MS
Application Note: Applications of a High Performance Ion Detection System to
the Analysis of Geological Samples by Sector Field ICP-MS
Application Note: Determination of Ultratrace Elements in Liquid Crystal by High
Resolution ICP-MS
Application Note: Determination of Ultratrace Elements in Semiconductor Grade
TMAH Developer by High Resolution ICP-MS
Application Note: ELEMENT XR: Extended Dynamic Range High Resolution ICP-
MS
Application Note: Enhancing Laser Ablation ICP-MS Using Sector Field
Technology
Application Note: Enhancing the Performance of Single Collector Sector Field
ICP-MS for Isotope Ratio Determinations
Application Note: Fast Scanning Sector Field ICP-MS with Laser Ablation for the
Multi-Element Analysis of Elephant Tusk
Application Note: Geochemical Applications using Sector-Field High Resolution
ICP-MS
Application Note: High Precision Determination of Sr/Ca and Mg/Ca Elemental
Ratios in Massive Coral Skeletons
Application Note: High Precision Measurement of Magnesium to Calcium and
Strontium to Calcium Elemental Ratios
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Certificates
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