Towards routine organic structure determination using Raman microscopy.
Jason MalenfantLucille KusterYohann GagnéKouassi SignoMaxime DenisSylvain CanesiMathieu FrenettePublished in: Chemical science (2023)
Raman microscopy can reveal a compound-specific vibrational "fingerprint" from micrograms of material with no sample preparation. We expect this increasingly available instrumentation to routinely assist synthetic chemists in structure determination; however, interpreting the information-dense spectra can be challenging for unreported compounds. Appropriate theoretical calculations using the highly efficient r 2 SCAN-3c method can accurately predict peak positions but are less precise in matching peak heights. To limit incorrect biases while comparing experimental and theoretical spectra, we introduce a user-friendly software that gives a match score to assist with structure determination. The capabilities and limitations of this approach are demonstrated for several proof-of-concept examples including the characterization of intermediates in the total synthesis of deoxyaspidodispermine.
Keyphrases
- highly efficient
- density functional theory
- molecularly imprinted
- solid phase extraction
- label free
- single molecule
- high resolution
- high speed
- high throughput
- optical coherence tomography
- molecular dynamics simulations
- raman spectroscopy
- healthcare
- magnetic resonance imaging
- mass spectrometry
- gene expression
- single cell
- health information
- social media
- low cost
- liquid chromatography
- tandem mass spectrometry