The diabatic picture of electron transfer, reaction barriers, and molecular dynamics
Troy Van Voorhis1, Tim Kowalczyk, Benjamin Kaduk
1Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA. tvan@mit.edu
Abstract:
Diabatic states have a long history in chemistry, beginning with early valence bond pictures of molecular bonding and extending through the construction of model potential energy surfaces to the modern proliferation of methods for computing these elusive states. In this review, we summarize the basic principles that define the diabatic basis and demonstrate how they can be applied in the specific context of constrained density functional theory. Using illustrative examples from electron transfer and chemical reactions, we show how the diabatic picture can be used to extract qualitative insight and quantitative predictions about energy landscapes. The review closes with a brief summary of the challenges and prospects for the further application of diabatic states in chemistry.
Related Concept Videos
Energy Diagrams, Transition States, and Intermediates
Reaction Mechanisms
For instance, the decomposition of ozone appears to follow a mechanism with two steps:
Transition State Theory
Diels–Alder vs Retro-Diels–Alder Reaction: Thermodynamic Factors
Thermal and Photochemical Electrocyclic Reactions: Overview
Electrochemical Systems

