Chemical Characterization of Heterogenous Polymeric Materials on the Nanoscale Using Photothermal AFM-IR

Chemical Characterization of Heterogenous Polymeric Materials on the Nanoscale Using Photothermal AFM-IR

This webinar shows how photothermal AFM-IR provides nanoscale chemical information with highly resolved IR spectra that directly correlate to FT-IR transmission spectroscopy.
Chemical Characterization of Heterogenous Polymeric Materials on the Nanoscale Using Photothermal AFM-IR
Two Complementary Nanoscale IR Techniques: Photothermal AFM-IR and s-SNOM

Two Complementary Nanoscale IR Techniques: Photothermal AFM-IR and s-SNOM

This webinar introduces two main techniques for nanoscale IR measurements: Photothermal AFM-IR (PTIR/AFM-IR) and IR-based Scattering Scanning Nearfield Optical Microscopy (IR s-SNOM).
Two Complementary Nanoscale IR Techniques: Photothermal AFM-IR and s-SNOM
Fully automated multispectral range FT-IR R&D spectrometer

Fully automated multispectral range FT-IR R&D spectrometer

With this webinar we will provide you an overview of the INVENIO R&D capabilities including many interesting application examples.
Fully automated multispectral range FT-IR R&D spectrometer
Failure and Damage Analysis in Polymer Industries

Failure and Damage Analysis in Polymer Industries

Martin Doedt shares real-world examples of issues in plastic processing, use, and production, showing how macro and micro FT-IR spectroscopy help identify and solve these problems
Failure and Damage Analysis in Polymer Industries
Improving Mechanistic Understanding of Fast Reactions Using Rapid, Reproducible in Situ Analysis by Stop-flow NMR and IR

Improving Mechanistic Understanding of Fast Reactions Using Rapid, Reproducible in Situ Analysis by Stop-flow NMR and IR

Prof. Lloyd-Jones will show how SF-FT-IR and SF-NMR help monitor fast, sensitive reactions like trifluoromethylation, enabling reproducible analysis and precise temperature control.
Improving Mechanistic Understanding of Fast Reactions Using Rapid, Reproducible in Situ Analysis by Stop-flow NMR and IR
Quantitative FTIR-Gas Analysis: As Easy As Can Be

Quantitative FTIR-Gas Analysis: As Easy As Can Be

The basic principles of FTIR-based gas analysis are covered in this webinar.
Quantitative FTIR-Gas Analysis: As Easy As Can Be
The marriage of FT-IR and cw THz technology: 1+1 is greater than 2!

The marriage of FT-IR and cw THz technology: 1+1 is greater than 2!

Learn about FT-IR challenges in the far IR/THz region, vacuum advantages, the basics of verTera THz technology, and its application combined with FT-IR.
The marriage of FT-IR and cw THz technology: 1+1 is greater than 2!
FT-IR Spectroscopy for Catalysis Research

FT-IR Spectroscopy for Catalysis Research

This webinar covers current research in catalysis, key aspects of instrumental setups, available accessories for in-situ monitoring, and applications across research fields.
FT-IR Spectroscopy for Catalysis Research
Vacuum Benefits for High-End Research Using FT-IR Technique

Vacuum Benefits for High-End Research Using FT-IR Technique

Dr. Xia Stammer will describe how a vacuum not only terminates the water lines, but essentially increases stability, sensitivity, reproducibility, and thus the overall performance of the spectrometer.
Vacuum Benefits for High-End Research Using FT-IR Technique
 FT-IR in Academia: Physics Applications

FT-IR in Academia: Physics Applications

This webinar provides a fundamental introduction to FT-IR applications in current physics research and offers a basic technical overview of infrared spectroscopy.
 FT-IR in Academia: Physics Applications