Related Experiment Video
Updated: Jul 17, 2025

Author Spotlight: A Computational Approach to Decipher Amino Acid Preferences in Multispecific Protein-Protein Interactions
Published on: January 26, 2024
A machine-learning tool to predict substrate-adaptive conditions for Pd-catalyzed C-N couplings
N Ian Rinehart1, Rakesh K Saunthwal1, Joël Wellauer2
1Roger Adams Laboratory, Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Abstract:
Machine-learning methods have great potential to accelerate the identification of reaction conditions for chemical transformations. A tool that gives substrate-adaptive conditions for palladium (Pd)-catalyzed carbon-nitrogen (C-N) couplings is presented. The design and construction of this tool required the generation of an experimental dataset that explores a diverse network of reactant pairings across a set of reaction conditions. A large scope of C-N couplings was actively learned by neural network models by using a systematic process to design experiments. The models showed good performance in experimental validation: Ten products were isolated in more than 85% yield from a range of couplings with out-of-sample reactants designed to challenge the models. Importantly, the developed workflow continually improves the prediction capability of the tool as the corpus of data grows.
More Related Videos
10:33Development of Inhibitors of Protein-protein Interactions through REPLACE: Application to the Design and Development Non-ATP Competitive CDK Inhibitors
Published on: October 26, 2015
08:59Defining Substrate Specificities for Lipase and Phospholipase Candidates
Published on: November 23, 2016
Related Concept Videos
Predicting Reaction Outcomes
Predicting Products: SN1 vs. SN2
With increased substitution on the alkyl halide,...
Predicting Molecular Geometry
Predicting Products: Substitution vs. Elimination
The following factors can influence the mechanisms competing against each other:
Olefin Metathesis Polymerization: Acyclic Diene Metathesis (ADMET)
Similar to cross-metathesis, ADMET also involves the formation of metallacyclobutane intermediate by [2+2] cycloaddition of one of the double bonds of a terminal diene with...
Cooperative Allosteric Transitions