Simplified workflows for the Thermo Scientific iCAP TQ ICP-MS
Technical notes | 2017 | Thermo Fisher ScientificInstrumentation
Triple quadrupole ICP-MS technology addresses increasingly stringent detection limits and complex spectral interferences, providing laboratories with robust and reliable trace element analysis across a wide range of sample matrices.
This technical note describes simplified workflows for the Thermo Scientific iCAP TQ ICP-MS, highlighting features that streamline instrument setup, method development, and routine analysis while maintaining high data quality.
The iCAP TQ ICP-MS integrates several hardware and software advances:
Comparison of single quadrupole KED mode and TQ mass shift mode for arsenic analysis in vitamin B12 matrices demonstrates:
The ability to pre-filter ions and shift analytes to interference-free masses yields more reliable quantitation in challenging matrices.
The iCAP TQ ICP-MS simplifies triple quadrupole analysis to near single quadrupole ease, offering:
Further developments may include expanded reaction gas options, deeper software integration with laboratory information management systems (LIMS), advanced data analytics driven by machine learning, and remote diagnostics to enhance uptime and method optimization.
The Thermo Scientific iCAP TQ ICP-MS combines advanced hardware design and intelligent software to deliver high-quality, interference-free data with streamlined workflows, making triple quadrupole ICP-MS accessible and efficient for routine and specialized analyses.
No specific literature references were provided in the source document.
ICP/MS, ICP/MS/MS
IndustriesManufacturerThermo Fisher Scientific
Summary
Significance of the Topic
Triple quadrupole ICP-MS technology addresses increasingly stringent detection limits and complex spectral interferences, providing laboratories with robust and reliable trace element analysis across a wide range of sample matrices.
Objectives and Study Overview
This technical note describes simplified workflows for the Thermo Scientific iCAP TQ ICP-MS, highlighting features that streamline instrument setup, method development, and routine analysis while maintaining high data quality.
Methodology and Instrumentation
The iCAP TQ ICP-MS integrates several hardware and software advances:
- Hardware Features
- Drop-down front door for rapid access to cones and extraction lenses
- Bayonet-style fully demountable torch for quick maintenance
- Qtegra ISDS Software
- “Get Ready” automated daily startup routines for interface tuning and performance checks
- Reaction Finder assistant to auto-configure isotopes, reaction gases, and mass shift settings
Key Results and Discussion
Comparison of single quadrupole KED mode and TQ mass shift mode for arsenic analysis in vitamin B12 matrices demonstrates:
- SQ-KED performance degrades as CoO interference increases, raising background equivalent concentrations (BECs)
- TQ-O2 mass shift mode maintains consistent BECs by filtering Co precursors in Q1 and measuring 75As16O at m/z 91
The ability to pre-filter ions and shift analytes to interference-free masses yields more reliable quantitation in challenging matrices.
Benefits and Practical Applications
The iCAP TQ ICP-MS simplifies triple quadrupole analysis to near single quadrupole ease, offering:
- Reduced method development time through automated workflows
- Enhanced interference removal for trace and ultra-trace analyses
- Consistent day-to-day performance via automated tuning and verification
- Flexibility to override settings for specialized research applications
Future Trends and Opportunities
Further developments may include expanded reaction gas options, deeper software integration with laboratory information management systems (LIMS), advanced data analytics driven by machine learning, and remote diagnostics to enhance uptime and method optimization.
Conclusion
The Thermo Scientific iCAP TQ ICP-MS combines advanced hardware design and intelligent software to deliver high-quality, interference-free data with streamlined workflows, making triple quadrupole ICP-MS accessible and efficient for routine and specialized analyses.
Reference
No specific literature references were provided in the source document.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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