Metrohm TacticID Mobile handheld Raman spectrometer
Brožury a specifikace | 2021 | MetrohmInstrumentace
The ability to rapidly and non-destructively identify narcotics, hazardous chemicals and suspicious materials in the field is essential for first responders and safety personnel. Handheld Raman spectrometers operating at longer wavelengths reduce fluorescence interference and expand the range of detectable real-world samples, supporting safer and more effective decision making.
This overview presents the design features, analytical performance and practical applications of a portable 1064 nm Raman analyzer developed to provide point-of-need substance identification. Emphasis is placed on speed, reliability and adaptability to diverse sample matrices encountered in law enforcement, customs and chemical safety operations.
The device uses Raman spectroscopy to capture molecular fingerprints of solid and liquid samples through transparent barriers or directly using a set of sampling accessories. Key instrumentation details include:
Performance evaluation demonstrates rapid identification of unknown materials within 10 to 40 seconds. The long-wavelength laser effectively suppresses fluorescence from colored or impure street samples. Users can annotate scans with photos, GPS coordinates and notes, ensuring full traceability. Mixture analysis tools reveal component composition and threat level, while customizable libraries allow swift response to emerging substances.
This handheld Raman analyzer offers numerous advantages for field deployment:
Advancements in portable spectroscopy are likely to focus on expanding spectral libraries with cloud-based sharing, integrating AI-driven spectral interpretation for enhanced accuracy, and further miniaturization for seamless wearable applications. Enhanced connectivity and real-time threat intelligence will streamline field operations and interagency collaboration.
The described 1064 nm handheld Raman spectrometer combines rapid, non-destructive identification with robust hardware, comprehensive libraries and user-friendly operation. It empowers safety and security professionals with reliable substance analysis in under a minute, significantly improving response times and operational safety.
None cited
RAMAN Spektrometrie
ZaměřeníVýrobceMetrohm
Souhrn
Significance of the Topic
The ability to rapidly and non-destructively identify narcotics, hazardous chemicals and suspicious materials in the field is essential for first responders and safety personnel. Handheld Raman spectrometers operating at longer wavelengths reduce fluorescence interference and expand the range of detectable real-world samples, supporting safer and more effective decision making.
Study Objectives and Overview
This overview presents the design features, analytical performance and practical applications of a portable 1064 nm Raman analyzer developed to provide point-of-need substance identification. Emphasis is placed on speed, reliability and adaptability to diverse sample matrices encountered in law enforcement, customs and chemical safety operations.
Methodology and Instrumentation
The device uses Raman spectroscopy to capture molecular fingerprints of solid and liquid samples through transparent barriers or directly using a set of sampling accessories. Key instrumentation details include:
- Excitation source at 1064 nm with 220 mW typical output to minimize fluorescence
- Spectral detection range from 176 to 2500 cm-1 for broad chemical coverage
- 5 inch high-resolution touch screen plus physical buttons for gloved operation
- Embedded software with targeted libraries of over 1 200 narcotics, precursors, explosives, pharmaceuticals and common chemicals
- Versatile sampling adaptors including point and shoot, vial holder, bottle adapter, immersion probe and large spot optics
- Data formats in csv, spc and pdf with built-in safety labels (GHS, NFPA704)
- Connectivity via USB or secure Wi-Fi to PC software for data management and library updates
- Rechargeable Li-ion battery supporting over 7 hours of continuous operation and more than 150 hours standby
- Rugged housing meeting IP68 and MIL-STD-810H standards for drop and vibration resistance
Main Results and Discussion
Performance evaluation demonstrates rapid identification of unknown materials within 10 to 40 seconds. The long-wavelength laser effectively suppresses fluorescence from colored or impure street samples. Users can annotate scans with photos, GPS coordinates and notes, ensuring full traceability. Mixture analysis tools reveal component composition and threat level, while customizable libraries allow swift response to emerging substances.
Benefits and Practical Applications
This handheld Raman analyzer offers numerous advantages for field deployment:
- Immediate actionable data supports critical decision making during emergency response
- Non-destructive analysis enables testing through packaging without sample preparation
- Low maintenance requirements coupled with extended standby time suit irregular usage patterns
- Integrated safety information guides appropriate handling of identified substances
- Sampling flexibility with dedicated adaptors covers powders, solids, liquids and heterogeneous mixtures
Future Trends and Applications
Advancements in portable spectroscopy are likely to focus on expanding spectral libraries with cloud-based sharing, integrating AI-driven spectral interpretation for enhanced accuracy, and further miniaturization for seamless wearable applications. Enhanced connectivity and real-time threat intelligence will streamline field operations and interagency collaboration.
Conclusion
The described 1064 nm handheld Raman spectrometer combines rapid, non-destructive identification with robust hardware, comprehensive libraries and user-friendly operation. It empowers safety and security professionals with reliable substance analysis in under a minute, significantly improving response times and operational safety.
References
None cited
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