SICRIT ® – The Ion Source for Direct MS Measurements
Brochures and specifications | 2021 | PlasmionInstrumentation
Direct mass spectrometry (MS) screening and real-time monitoring of volatile organic compounds (VOCs) are critical for environmental surveillance, industrial process control, food quality assessment and security applications. Traditional MS workflows often require extensive sample preparation, inert gases, and dedicated ion sources, adding time, cost and complexity. The SICRIT® ion source by Plasmion addresses these limitations by offering ambient cold plasma ionization, enabling rapid, sensitive, and preparation-free MS analysis across a range of sample types.
This application note presents the performance characteristics, workflow integration options and representative use cases of the SICRIT® ion source for direct MS measurements. Key aims include:
The SICRIT® setup comprises a dielectric barrier discharge ion source, control unit, heated GC/SPME and direct sampling modules, plus MS interface adaptors.
Demonstration studies highlight the following performance attributes:
The SICRIT® approach delivers significant advantages:
Advancements in direct MS ionization and automation will likely focus on:
Plasmion’s SICRIT® ion source transforms any LC-MS instrument into a versatile VOC sensor, enabling rapid, sensitive, and cost-effective direct MS measurements without sample preparation. Its plug-and-play design, broad analyte coverage and compatibility with automation platforms support diverse applications from environmental screening to food quality and security analysis.
Plasmion Application Note: SICRIT® – The Ion Source for Direct MS Measurements
LC/MS, DART
IndustriesManufacturerPlasmion
Summary
Significance of the topic
Direct mass spectrometry (MS) screening and real-time monitoring of volatile organic compounds (VOCs) are critical for environmental surveillance, industrial process control, food quality assessment and security applications. Traditional MS workflows often require extensive sample preparation, inert gases, and dedicated ion sources, adding time, cost and complexity. The SICRIT® ion source by Plasmion addresses these limitations by offering ambient cold plasma ionization, enabling rapid, sensitive, and preparation-free MS analysis across a range of sample types.
Objectives and Study Overview
This application note presents the performance characteristics, workflow integration options and representative use cases of the SICRIT® ion source for direct MS measurements. Key aims include:
- Demonstrating plug-and-play installation on any LC-MS platform without calibration or consumables.
- Evaluating sensitivity and quantitative capability for headspace and liquid analysis down to low-ppt levels.
- Illustrating versatility through examples such as perfluorocarboxylic acid (PFCA) screening, biofuel ether (OME) quantification, coffee roasting aroma profiling and honey authentication.
Methodology and Instrumentation
The SICRIT® setup comprises a dielectric barrier discharge ion source, control unit, heated GC/SPME and direct sampling modules, plus MS interface adaptors.
- SICRIT® Ion Source: Generates a cold plasma in a confined capillary extension of the MS inlet, avoiding ion loss by coulombic repulsion and enabling soft, fragment-free ionization of polar and non-polar analytes using ambient air.
- SC-30 Control Unit: Regulates plasma parameters and heated transfer lines for automated headspace or liquid desorption.
- GC/SPME Module: Offers direct coupling from GC, microbalances or SPME fibers for separation, enrichment and quantitative injection.
- MS Interfaces and Sampling Line: Provide mechanical and electronic integration with major MS brands, plus a heated stainless-steel transfer line for remote gas-tight sampling.
Main Results and Discussion
Demonstration studies highlight the following performance attributes:
- PFCA Detection: High-resolution measurements of C3–C8 perfluorocarboxylic acids in coating powders are achieved without extraction, with clear mass spectra showing distinct homolog series.
- Biofuel OMEs: Direct liquid analysis of polyoxymethylene ethers reveals protonated and ammonium adducts within seconds, enabling rapid fuel quality control.
- Coffee Roasting Monitoring: Online profiling of over 500 aroma compounds, such as pyrazines and damascenones, captures dynamic flavor development in real time.
- Honey Authentication: Non-targeted MS fingerprints of blossom, fir, forest and acacia honeys clustered automatically, demonstrating reproducibility (RSD <5%) and discrimination power.
Benefits and Practical Applications
The SICRIT® approach delivers significant advantages:
- No sample preparation or calibration—analyze solids, liquids and gases in ambient air.
- Rapid results—screening or quantitative headspace/liquid analysis in seconds.
- Cost efficiency—eliminates consumables like noble gases and reduces capital expenditure on multiple ion sources.
- High sensitivity and reproducibility—soft ionization minimizes fragmentation, expands analyte range, and yields RSD <5% with PAL-based automation.
Future Trends and Opportunities
Advancements in direct MS ionization and automation will likely focus on:
- Integration with AI-driven data analysis for non-targeted screening and pattern recognition.
- Miniaturized and field-deployable MS systems for on-site environmental and security monitoring.
- Expanded coupling with micro-separation and enrichment techniques to enhance selectivity in complex matrices.
- Real-time process control in pharmaceutical, petrochemical and food industries using continuous VOC monitoring.
Conclusion
Plasmion’s SICRIT® ion source transforms any LC-MS instrument into a versatile VOC sensor, enabling rapid, sensitive, and cost-effective direct MS measurements without sample preparation. Its plug-and-play design, broad analyte coverage and compatibility with automation platforms support diverse applications from environmental screening to food quality and security analysis.
Reference
Plasmion Application Note: SICRIT® – The Ion Source for Direct MS Measurements
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