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INVENIO R intuitive FTIR R&D Spectrometer

Brochures and specifications | 2018 | Bruker OpticsInstrumentation
FTIR Spectroscopy
Industries
Materials Testing
Manufacturer
Bruker

Summary

Significance of the Topic


The development of versatile Fourier Transform Infrared (FTIR) spectrometers plays a critical role in modern analytical chemistry, enabling researchers to probe molecular vibrations across a wide spectral range. INVENIO R, as an entry-level R&D instrument, integrates innovative design elements to deliver high signal-to-noise performance, broad spectral coverage from far-IR through UV/VIS, and exceptional flexibility for advanced material and reaction studies.

Objectives and Overview of the Study


This overview introduces the INVENIO R spectrometer’s key features and its performance in diverse application scenarios. The goal is to illustrate how the instrument’s architecture and modularity support rapid scanning, time-resolved experiments, emission analysis, spectroelectrochemistry, TGA coupling, microscopy, and more, under routine and demanding R&D conditions.

Methodology


The operational modes and measurement workflows include:
  • Rapid Scan and Step Scan TRS: enabling sub-15 ms temporal resolution for dynamic processes.
  • Emission and Emittance Studies: characterizing thermal emitters and absorber materials above room temperature.
  • Spectroelectrochemistry: monitoring oxidation of solutions (e.g., ferrocyanide) via 3D OPUS plots.
  • TGA-FTIR Coupling: tracking thermal decomposition of pharmaceuticals (e.g., carbamazepine up to 500 °C) with evolved-gas identification.
  • Diffuse and Specular Reflectance: measuring coated mirrors and determining film thickness via interference in the visible range.
  • Microscopy and Imaging: automated HYPERION series for chemical mapping and hyperspectral analysis using FPA detectors.

Instrumentation


Key hardware components that underpin INVENIO R’s performance:
  • RockSolid™ Interferometer: wear-free, permanently aligned scanner with Bruker FM technology for ultra-wide spectral range.
  • MultiTect™ Detector Unit: up to five room-temperature detectors (DTGS, InGaAs, Si, GaP) automatically switched for continuous coverage from FIR to UV/VIS.
  • DigiTect™ Exchangeable Slot: supports cryogen-cooled MCT or other specialized detectors.
  • Transit™ Channel: dedicated MIR DTGS module for fast mid-IR transmittance without disturbing main compartment.
  • Internal and External Sources: up to two software-selectable internal sources (including CenterGlow™), plus two external inputs for lasers or other emitters.
  • Beam Path Flexibility: three exit and two input ports (fourth exit on request) with electronically coded windows and filter/attenuator wheels.
  • OPUS Software Suite: OPUS TOUCH R&D interface on integrated touchscreen, comprehensive data acquisition, processing, multivariate analysis, library search, and validation tools.
  • External Modules Compatibility: plug-and-play for TGA systems, FT-Raman (RAM II), PL II photoluminescence, VCD/PM-IRRAS, high-throughput screening, and Hyperion microscopes.

Key Results and Discussion


Performance demonstrations highlight:
  • Temporal Resolution: MIR laser diode activation captured within 100 ns at 2 cm⁻¹ spectral resolution.
  • SNR and Spectral Continuity: platinum-diamond ATR measurement of sulfathiazole from 4,000 to 80 cm⁻¹ without gaps.
  • Thermal Emission: coated copper surfaces analyzed at elevated temperatures using emission adaptor A540.
  • Chemical Imaging: high-throughput IR maps and visible-range images with clear spatial resolution down to single microns.
  • Fluorescence Suppression: FT-Raman module showing low-background spectra of semiconductor materials at room and cryogenic temperatures.

Benefits and Practical Applications


The INVENIO R system offers:
  • Modularity and Scalability: simple upgrades across spectral ranges and analytical modes.
  • User-Friendly Operation: integrated touch panel, coded windows, QuickLock accessory changes.
  • High Throughput: automated detector switching and external ports for parallel experiments.
  • Regulatory Compliance: OPUS Validation Program supports GMP/GLP/cGMP workflows with traceable standards.
  • Long-Term Reliability: robust optical bench, desiccated/purgeable design, and ISO-certified quality management.

Future Trends and Applications


Emerging directions for FTIR research instrumentation include:
  • Integration with Machine Learning: automated spectral interpretation and predictive modelling.
  • Expanded Hyperspectral Microscopy: combining IR emission and Raman imaging for multi-modal studies.
  • Advanced Detectors: development of room-temperature quantum devices for further sensitivity gains.
  • Remote Operation and Automation: cloud-based control, high-throughput screening for materials discovery.
  • Environmental and In-Situ Studies: field-deployable modules for real-time monitoring.

Conclusion


INVENIO R embodies a next-generation FTIR platform that harmonizes broad spectral range, rapid temporal response, and extensive modularity. Its innovative optical design and software ecosystem support a wide range of R&D and QA/QC applications, offering researchers a robust and scalable solution for complex analytical challenges.

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