Related Experiment Video
Updated: Aug 9, 2025

Excitonic Hamiltonians for Calculating Optical Absorption Spectra and Optoelectronic Properties of Molecular Aggregates and Solids
Published on: May 27, 2020
Universally Exhaustive Generation of Molecular Structures and Prediction of Their Electronic States Using Machine
Akira Ohno1, Jun-Ichi Hanna1, Hiroaki Iino1
1Tokyo Institute of Technology, Imaging Science and Engineering Research Center, J1-2, 4259 Nagatsuta, Midori-ku, Yokohama, 226-8503, Japan.
Abstract:
We have proposed a new method for the exploration of organic functional molecules, using an exhaustive molecular generator combined without combinatorial explosion and electronic state predicted by machine learning and adapted for developing n-type organic semiconductor molecules for field-effect transistors. Our method first enumerates skeletal structures as much as possible and next generates fused ring structures using substitution operations for atomic nodes and bond edges. We have succeeded in generating more than 4.8 million molecules. We calculated the electron affinity (EA) of about 51 thousand molecules with DFT calculation and trained the graph neural networks to estimate EA values of generated molecules. Finally, we obtained the 727 thousand molecules as candidates that satisfy EA values over 3 eV. The number of these possible candidate molecules is far beyond what we have been able to propose based on our knowledge and experience in synthetic chemistry, indicating a wide diversity of organic molecules.
Related Concept Videos
Predicting Molecular Geometry
Types of Semiconductors
Bipolar Junction Transistor
Fermi Level
At absolute zero temperature, electrons fill all energy states up to the Fermi level, leaving upper states empty. As the temperature rises,...
Predicting Products: SN1 vs. SN2
With increased substitution on the alkyl halide,...
Molecular Models

