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Thermo Scientific iCAP MSX ICP-MS (Product specifications)

Brochures and specifications | 2025 | Thermo Fisher ScientificInstrumentation
ICP/MS
Industries
Manufacturer
Thermo Fisher Scientific

Summary

Importance of the topic


The analysis of trace elements by inductively coupled plasma mass spectrometry supports critical decisions in environmental monitoring, food safety, pharmaceuticals and advanced research fields such as single cell and nanoparticle characterization. High sensitivity, low detection limits and robust matrix tolerance are essential to deliver reliable data across varied sample types.

Objectives and Overview of the Article


This document describes the design features, performance metrics and applications of the Thermo Scientific iCAP MSX ICP-MS. It highlights how advanced hardware and software innovations address challenges in high throughput analytical laboratories and research environments.

Methodology and Instrumentation


The iCAP MSX integrates optimized sample introduction components including a PFA concentric nebulizer, Peltier cooled cyclonic spray chamber and argon gas dilution system to handle high total dissolved solids. A demountable quartz torch and a selection of injectors support diverse matrices. The QCell collision reaction cell provides two stage interference removal by kinetic energy discrimination. Ion optics employ IntelliLens voltage optimization and a RAPID 90 degree cylindrical lens for maximal ion transmission. A solid state RF generator at 27 MHz, water cooled load coil and robust vacuum system ensure stable plasma and rapid recovery. Detection relies on a dual mode electron multiplier with broad dynamic range. Qtegra ISDS software controls automated tuning, data acquisition and peripheral devices for end to end workflow management.

Key Results and Discussion


Installation testing demonstrates sensitivity up to 850 kcps ppb for uranium, detection limits below 0.3 ppt for beryllium and interference removal efficiencies exceeding 98 percent. Mass stability remains within 0.025 u per day and abundance sensitivity falls below 0.5 ppm. The instrument recovers high throughput performance with minimal carryover and extended maintenance intervals due to intelligent matrix optimization.

Benefits and Practical Applications


  • Automated argon dilution reduces manual sample preparation and extends uptime in high matrix analysis
  • Advanced cell technology suppresses polyatomic and doubly charged interferences for reliable low level quantification
  • Flexible hardware options support single cell, nanoparticle, laser ablation and organic solvent studies
  • Integrated software streamlines instrument readiness, analysis and reporting with compliance tools for regulated labs

Future Trends and Possibilities


The convergence of real time data processing, miniaturized sample introduction and novel reaction gases will further extend the capabilities of ICP-MS in fields like bioimaging, nanomaterials and isotopic fingerprinting. Integration with machine learning algorithms promises predictive maintenance and adaptive tuning for autonomous operation.

Conclusion


The Thermo Scientific iCAP MSX ICP-MS sets a new benchmark for sensitivity, robustness and productivity in trace elemental analysis. Its combination of optimized hardware, intelligent software and modular design empowers laboratories to meet current demands and embrace emerging analytical challenges.

References


  • Thermo Fisher Scientific 2024 Product Specifications for iCAP MSX ICP-MS PS003140-en

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