Spectroscopy Analyses

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Spectroscopy Analyses

NMR spectroscopy is an extremely versatile and precise analytical technique used to study the structure, purity, and dynamics of chemical compounds. It enables detailed analysis of both low-molecular-weight and high-molecular-weight compounds — including polymers, proteins, peptides, nucleic acids — as well as biological samples and materials of complex composition.

With the ability to acquire one- and multidimensional spectra, NMR allows for determining molecular structure, spatial arrangement, conformations, intermolecular interactions, and dynamic changes over time. Modern instrumentation also enables the study of solids, opening pathways for structural analysis of substances that are difficult to dissolve, crystalline materials, powders, polymers, and biomaterials.

Identification of organic compounds using NMR

Method accredited by PCA in accordance with accreditation scope AB 1661


  • NMR500,
  • NMR600,
  • NMR700 MHz

Quantitative determination of organic compounds using NMR in the range of 10–100%


Method accredited by PCA in accordance with accreditation scope AB 1661


  • NMR500,
  • NMR600,
  • NMR700 MHz

Solid-state analysis (MAS NMR)


NMR600 MHz

Determination of the size of particles, biomolecules, and polymer analysis


  • NMR500,
  • NMR600,
  • NMR700 MHz

Determination of diffusion coefficients of low-molecular-weight compounds and polymers


  • NMR500,
  • NMR600,
  • NMR700 MHz

Investigation of molecular interactions, micelle formation, and exchange mechanisms

  • NMR500,
  • NMR600,
  • NMR700 MHz

Confirmation of identity and/or identification of main functional groups using FTIR

FTIR spectrometry enables the identification of functional groups and chemical bonds, assessment of substance purity, detection of impurities, and examination of polymeric, organic, and mineral material surfaces.

FTIR Spectrometer Nicolet 6700 (Thermo Scientific)

Identification of main functional groups, mapping and/or defect analysis using µ-FTIR

µ-FTIR microscopy enables material analysis at the microscopic scale. It allows surface mapping and precise defect analysis.

FTIR Microscope Nicolet iN10 MX (Thermo Scientific)

Raman spectroscopy measurements

Analysis of chemical structure and crystallinity of materials, including polymers, ceramics, graphene, and nanomaterials. Capability for mapping with micrometer-scale resolution.

Confocal Raman microscope WITec alpha300 R

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