Developing robust chemical processes requires more than a single analytical perspective. This application note demonstrates how on-line benchtop NMR, in situ mid-infrared (MIR), and in situ Raman spectroscopy can be combined within a unified Process Analytical Technology (PAT) workflow.
The study highlights how NMR can be used alongside complementary PAT techniques to deliver compound-specific concentration information, support interpretation of MIR and Raman trends, and strengthen reaction monitoring during process development.
Reaction monitoring often requires balancing chemical specificity, process visibility, and operational practicality.
Different analytical methods reveal different aspects of reaction behavior. NMR, MIR, and Raman each provide distinct information about a chemical system. Combining these orthogonal techniques can strengthen process understanding while reducing analytical blind spots during process development.
The application note demonstrates how data from NMR, MIR, and Raman can be compared within a complementary PAT strategy to support reaction monitoring, model development, and deeper process understanding.
This study demonstrates that the greatest value comes from combining NMR, MIR, and Raman within a unified PAT workflow rather than relying on a single analytical technique.
NMR provides chemically specific, inherently quantitative insight, while MIR and Raman contribute complementary in situ measurements that extend real-time process visibility. Together, these techniques provide a practical route to richer reaction monitoring and more robust PAT-based process development.
Explore the complete workflow, experimental design, analytical results, PCA analysis, and quantitative modeling data.
Whether you are evaluating benchtop NMR, reaction monitoring strategies, or complementary PAT approaches, our specialists can help identify the right solution for your application.