Raman spectroscopy has been explored for planetary exploration, particularly through the SHERLOC instrument for Mars habitability ...
Microspectrophotometry enables non-destructive graphene and carbon nanotubes characterization for research, QC, and process ...
During light scattering, the majority of scattered light undergoes no change in frequency (or energy), in a process referred to as referred to as elastic or Rayleigh scattering. Raman spectroscopy ...
Laser lights are usually employed for the Raman spectroscopic analysis. The photons emitted by the laser light are absorbed by the sample, temporarily entering a non-stationary, exceedingly brief ...
Raman spectroscopy bioreactor monitoring delivers real-time visibility into glucose and lactate levels without ever opening a sterile boundary. As upstream bioprocessing shifts toward higher cell ...
The war on drugs shows no indication of slowing down; illicit drugs appear on the market every day, and law enforcement officers face numerous challenges in their endeavors to reduce trafficking and ...
Both NIR and Raman spectroscopy will tell you what is happening inside your bioreactor in real time. Choosing the right one requires knowing exactly where each technique breaks down. NIR vs Raman ...
Laser wavelength selection, a critical determinant of accuracy and data quality, is guided by factors such as resonance, fluorescence, and sample absorption. Ensuring the correct laser wavelength ...
This interview takes a closer look at how polymer characterization supports smarter decisions from early development to full-scale manufacturing.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results