ReactIR For Continuous Flow Chemistry
Analyze Continuous Flow Chemistry in Real-Time
Researchers are increasingly using continuous flow chemistry to develop new reactions and processes with increased specificity, yield and product quality. Optimization of this work is often challenging as offline analytical techniques, such as High-Performance Liquid Chromatography (HPLC), cannot provide fast enough information to optimize the reaction in real time. A dedicated ReactIR Fourier Transform Infrared Spectroscopy (FTIR) instrument for in situ, real-time monitoring of continuous flow chemistry, enables researchers to save valuable time and materials when screening and optimizing their reactions.
Examples of ReactIR value in continuous flow chemistry include:
- Oxazole Formation
- Fluorination Reaction
- Accurate Control of Reagent Addition in Multi-step Segmented Flow Processes
- Analysis of a Continuous Process for Alkene Ozonolysis

Specifikationer - ReactIR For Continuous Flow Chemistry
For Use In | Laboratory |
Software | iC IR |
Detector | SE MCT |
Optical Range (Base Unit) | 4000 – 650 cm-1 |
Purge Requirement | No |
Dimensions (WxHxD) | 180 mm x 274 mm x 249 mm |
Weight | 9 kg |
Communication | USB 2.0 |
Resolution | 4 cm-1 maximum |
Operating Range (Temp.) | 19 °C – 25 °C |
Probe Optical Window | 2500 – 650 cm-1 maximum (Fiber Probe) |
Wetted Materials | Gold |
Probe Pressure (Maximum) | 107bar (Sentinel) |
Probe Temperature (Maximum) | 200°C (Sentinel) |
Safety Certification | EMC Directive 2004/109/EC, Low Voltage Directive 2006/95/IEC |
Probe pH Range | 1 – 9 (Silicon) |
Materialnummer | 14000003 |
Dokumentation
ReactIR in situ sampling technology assures usability in a wide range of batch and continuous reaction conditions.
Use spectroscopic data to increase chemical understanding and knowledge of the chemical process and associated critical parameters.
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