Neoma Multicollector ICP MS

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Neoma Multicollector ICP MS

The Neoma Multicollector ICP MS is built to perform isotope analysis or explore novel isotopes in unknown samples or materials in geosciences and other advanced research areas. This ICP-MS system builds on Thermo Fisher Scientific multi-collector technology to deliver all the advantages of high-precision isotope ratio analysis. This instrumentation is often used in climate research, investigating historical climate changes in the earth’s history. By joining the IsoFootprint initiative, Neoma MC-ICP-MS contributes not only to the exploration of history but also to a sustainable future.

Neoma Multicollector ICP MS can now be upgraded to full MS/MS capability, with the resulting MC-ICPMS/MS having no compromises in sensitivity, accuracy or precision. With the ability to select a discrete range of masses to enter the collision/reaction cell, reactive gasses such as O2 , SF6 and NH3 can be used alongside H2 and He. Neoma MC-ICP-MS/MS can be used for a variety of applications, such as Ti, Fe, U and in-situ Rb/Sr dating.

The Thermo Scientific™ Neoma™ is a high-resolution double-focusing multicollector ICP-MS. It brings together cutting-edge technology from both the Thermo Scientific™ Ultra™ High Resolution IRMS and the Thermo Scientific™ iCAP Qnova™ ICP-MS and combines this with the field-proven performance of the Thermo Scientific™ Neptune™ MC-ICP-MS Series. With the Neoma MC-ICP-MS high precise isotope ratio data are within reach of every user. It delivers market leading sensitivity and precision with radically improved ease of use and productivity. Operator-focused software streamlines workflows and integrates control of peripherals. Neoma enables the user to be more productive with routine applications, while keeping the freedom to develop new research applications. 

At the heart of the Neoma MC-ICP-MS is the enhanced variable multicollector detector array with 11 Faraday cup detectors. This ensures the flexibility to cover isotopic applications from Li through to U, allowing certain isotope systems (e.g. Mg-Si) to be measured within a single measurement line for the first time ever.In addition, Neoma MC-ICP-MS offers the most flexible detector system yet offered by Thermo Fisher Scientific, with three different detector types spanning more than 9 orders of magnitude in signal intensity range (from 1 cps to 6 Gcps). Catering for any sample, no matter how big or small.

Benefits

  • Extract isotope ratio information from even the smallest samples with unrivaled signal/noise ratio
  • Flexibility to cover multiple applications, research and routine, without compromise
  • Save time and be more productive with intuitive software that is easy to learn, quick and reliable to setup measurements

neoma icp ms

Feature in Neoma MC-ICP-MS Technology

Thermo Scientific™ iCAP™ Qnova Series ICP

  • Robust and easy assembly quartz ICP torch
  • Balanced coil technology for ultimate plasma stability
  • Field-proven argon ICP ion source with digital, solid state 27 MHz RF generator

Thermo Scientific™ Jet Interface™

  • Highest sensitivity and stability in wet and dry plasma
  • high-performance interface pump, optimized interface design, and a set of cones that can be changed to address individual application needs.
  • Low maintenance

 

Limit-breaking detector array

  • 11 Faraday cup mobile detector array:no limitations
  • Thermo Scientific™ 1013 Ω Amplifier Technology™ with extended dynamic range
  • 24 customizable amplifier slots
  • Dynamic measurements with extended dispersion lens optics

A modern multicollector platform

  • Enhanced resolving power
  • Superior vacuum system
  • Innovative electronics
  • Excellent abundance sensitivity

Thermo Scientific™ Qtegra™ ISDS™ Software

  • Workflow support and automation for ease of use and productivity
  • Comprehensive data evaluation including transient signal analysis
  • Integration of peripherals such as desolvating nebulization, laser ablation and chromatography systems

https://www.analyteguru.com/t5/Blog/The-Way-Toward-Sustainable-Mass-Spectrometry/ba-p/14594

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