Login / Signup

Characterizing Chemical Similarity with Vibrational Spectroscopy: New Insights into the Substituent Effects in Monosubstituted Benzenes.

Yunwen TaoWenli ZouDieter CremerElfi Kraka
Published in: The journal of physical chemistry. A (2017)
A novel approach is presented to assess chemical similarity based the local vibrational mode analysis developed by Konkoli and Cremer. The local mode frequency shifts are introduced as similarity descriptors that are sensitive to any electronic structure change. In this work, 59 different monosubstituted benzenes are compared. For a subset of 43 compounds, for which experimental data was available, the ortho-/para- and meta-directing effect in electrophilic aromatic substitution reactions could be correctly reproduced, proving the robustness of the new similarity index. For the remaining 16 compounds, the directing effect was predicted. The new approach is broadly applicable to all compounds for which either experimental or calculated vibrational frequency information is available.
Keyphrases
  • density functional theory
  • molecular dynamics simulations
  • energy transfer
  • high resolution
  • raman spectroscopy
  • electronic health record
  • machine learning
  • single molecule
  • social media