Conference Scope


    Advancing Spectral Science Together.                          Different Wavelengths. Different Masses. One Spectral Vision.
 

Spectroscopic methods

  • Laser-Induced Breakdown Spectroscopy
  • Atomic spectroscopy (AAS, AFS, ICP-OES, ICP-MS, GD, etc.)
  • X-ray spectroscopy (XRF, XRD, XANES, PIXE, etc.)
  • Molecular spectroscopy (UV-VIS, NMR, Raman, IR, etc.)
  • Organic and inorganic mass spectrometry (TIMS, MALDI, LC-MS, GC-MS)
  • Nuclear techniques (Mössbauer spectroscopy, Gamma spectroscopy, NAA)
  • Photonics, photophysics, and photochemistry
  • Plasma spectroscopy
  • Imaging techniques
  • Surface analysis and depth profiling
  • Hyphenated techniques

Applications of spectroscopic methods

  • Environmental analysis
  • Food analysis
  • Clinical and pharmaceutical analysis
  • Biological applications
  • Fuels and biofuels
  • Geochemical analysis
  • Archaeometry and cultural heritage
  • Materials science and engineering
  • Nanoscience and nanotechnology
  • Space analysis

Sample preparation and Advanced Analytical Strategies

  • Chemical speciation
  • Metallomics
  • Proteomics
  • Speciomics: other "-omics" approaches
  • Sample fixation
  • Matrix-matched standards

Method development

  • Automation
  • Miniaturization
  • Machine learning
  • Chemometrics
  • In-situ analysis