Paton Research Group
  • Home
  • Rob Paton
  • Research
    • Data-Driven Chemistry
    • Catalyst Discovery and Design
    • Reaction Mechanism and Selectivity
  • Group
  • Publications
  • Gallery
  • Tools & Data
  • Theses
  • Click to open the search input field Click to open the search input field Search
  • Menu Menu

Harnessing triaryloxonium ions for aryne generation

Harnessing triaryloxonium ions for aryne generation.

Smith, O.; Hindson, M.; Sreenithya, A.; Tataru, V.; Paton, R. S.; Burton, J. W.; Smith, M. D. Nat. Synth. 2024, 3, 58–66

  • Nature Synthesis: Oxonium ions for easy aryne chemistry
/wp-content/uploads/2021/02/clear.png 0 0 Robert Paton /wp-content/uploads/2021/02/clear.png Robert Paton2024-01-17 02:25:332024-11-21 06:33:44Harnessing triaryloxonium ions for aryne generation
You might also like
Catalytic Enantioselective Synthesis of Indanes via Cation-Directed 5-Endo-Trig Cyclization
Origins of Asymmetric Phosphazene Organocatalysis: Computations Reveal a Common Mechanism for Nitro- and Phospho-Aldol Additions
Control of stereogenic oxygen in a helically chiral oxonium ion
Phosphazene Catalyzed Addition to Electron-Deficient Alkynes: the Importance of Nonlinear Allenyl Intermediates Upon Stereoselectivity
Synthesis, Characterization, and Reactivity of Complex Tricyclic Oxonium Ions, Proposed Intermediates in Natural Product Biosynthesis

Tags

allostery arynes Asymmetric Catalysis biosynthesis C-H functionalization catalysis catalytic mechanism computation conformational analysis conformational dynamics data-mining descriptors Design DFT-D3 Dispersion Correction dynamics enantioselecitivty enantioselectivity enzyme catalysis enzymes epigenetics featurization Gaussian GNN graph network graph neural network H-bonding heterocycles Informatics ion-pairing Kinetic Isotope Effect kinetics machine learning mechanism molecular features natural products nmr non-covalent interactions Noncovalent Interactions oniom ions parameters photocatalysis photochemistry physical organic descriptors prediction python Quasiharmonic regioselectivity site-selecitivity site-selectivity software stereoselectivity Structure-Selectivity Relationships structure prediction thermochemistry Vibrational Entropy

Colorado State University Logo

CCAS Icon

Paton Research Group

Department of Chemistry
Colorado State University
1301 Center Avenue
Ft. Collins, CO 80523-1872
patonlab@colostate.edu

© Copyright Paton Lab. Site by Academic Web Pages
  • Link to Google_scholar
  • Link to Github
  • Link to X
  • Link to LinkedIn
  • Login
Scroll to top Scroll to top Scroll to top