Thermo Scientific iCAP MTX triple quadrupole ICP-MS
Brochures and specifications | 2024 | Thermo Fisher ScientificInstrumentation
The analysis of trace and ultra-trace elements in complex matrices underpins research and quality control across industries such as environmental monitoring, clinical research, food safety, and materials science. Achieving reliable, high-sensitivity measurements without compromise from matrix interferences is essential for accurate decision-making and regulatory compliance.
This document presents the key features and performance of the Thermo Scientific iCAP MTX Triple Quadrupole ICP-MS, designed to deliver high detection power, advanced interference removal, and robust matrix handling. It outlines instrument capabilities, workflow integration, application examples, and comparative advantages over single-quadrupole systems.
Analytical performance is achieved through a combination of:
The iCAP MTX demonstrates:
The iCAP MTX ICP-MS offers:
Emerging needs for ultra-trace nanoparticle characterization, rapid speciation analysis, and high-throughput screening will drive further integration of intelligent sample introduction, real-time data analytics, and cloud-connected maintenance solutions. Continued refinement of reaction chemistries and AI-driven method optimization is expected to expand the range of analytes and matrices that can be accurately quantified.
The Thermo Scientific iCAP MTX Triple Quadrupole ICP-MS combines advanced matrix robustness, interference removal, and user-friendly software to deliver dependable, high-sensitivity elemental analysis. Its capabilities address current analytical challenges and position laboratories to meet future demands in diverse application fields.
ICP/MS, ICP/MS/MS
IndustriesManufacturerThermo Fisher Scientific
Summary
Importance of the Topic
The analysis of trace and ultra-trace elements in complex matrices underpins research and quality control across industries such as environmental monitoring, clinical research, food safety, and materials science. Achieving reliable, high-sensitivity measurements without compromise from matrix interferences is essential for accurate decision-making and regulatory compliance.
Objectives and Study Overview
This document presents the key features and performance of the Thermo Scientific iCAP MTX Triple Quadrupole ICP-MS, designed to deliver high detection power, advanced interference removal, and robust matrix handling. It outlines instrument capabilities, workflow integration, application examples, and comparative advantages over single-quadrupole systems.
Methodology and Instrumentation
Analytical performance is achieved through a combination of:
- Intelligent Matrix Handling (IMH) to minimize matrix exposure and maintain continuous operation without frequent cone cleaning.
- Easy Argon Gas Dilution (AGD) and integrated argon humidifier to reduce drift and prevent salt buildup.
- Intellilens technology for automated per-analyte lens optimization and sensitivity tuning.
- Triple quadrupole operation with O2 reaction gas in Q2 for effective interference removal (TQ-O2 mode) and comparison with single quadrupole KED methods.
- Qtegra ISDS software and HAWK maintenance assistant for streamlined workflows, instrument health monitoring, and consumable management.
Main Results and Discussion
The iCAP MTX demonstrates:
- Consistent, right-first-time results across high-matrix samples (e.g., whole blood, environmental waters) with minimal downtime.
- Significant reduction in background equivalent concentration (BEC) and instrument detection limits (IDL) for analytes like Se when compared to single-quad KED.
- Extended uninterrupted runs (>16 weeks) without cone cleaning despite challenging matrices.
- Rapid method development using Reaction Finder Assistant to automatically select optimal interference removal mode.
Benefits and Practical Applications
The iCAP MTX ICP-MS offers:
- High productivity through minimal training requirements and common software interfaces across ICP platforms.
- Robust performance in clinical, pharmaceutical, environmental, food, geochemical, and materials analysis.
- Regulatory compliance support for guidelines such as FDA, USP <232>/<233>, and ICH Q3D.
Future Trends and Opportunities
Emerging needs for ultra-trace nanoparticle characterization, rapid speciation analysis, and high-throughput screening will drive further integration of intelligent sample introduction, real-time data analytics, and cloud-connected maintenance solutions. Continued refinement of reaction chemistries and AI-driven method optimization is expected to expand the range of analytes and matrices that can be accurately quantified.
Conclusion
The Thermo Scientific iCAP MTX Triple Quadrupole ICP-MS combines advanced matrix robustness, interference removal, and user-friendly software to deliver dependable, high-sensitivity elemental analysis. Its capabilities address current analytical challenges and position laboratories to meet future demands in diverse application fields.
Used Instrumentation
- Thermo Scientific iCAP MTX Triple Quadrupole ICP-MS
- Intelligent Matrix Handling (IMH) and Easy Argon Gas Dilution (AGD)
- Intellilens automated lens optimization
- Qtegra ISDS software with HAWK maintenance assistant
- easyClick peristaltic pump
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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