Professor of Chemical Physics

The self-assembly of complex mesoscopic structures, the folding of proteins, and the complicated phenomenology of glasses are all manifestations of the underlying potential energy surface (PES). In each of these fields related ideas have emerged to explain and predict chemical and physical properties in terms of the PES. In studies of clusters and glasses the PES itself is often investigated directly, whereas for proteins and other biomolecules it is also common to define free energy surfaces, as the figure below illustrates for lysozyme.

Applications of energy landscape theory in my group range from studies of tunnelling splitting patterns in small molecules to computer simulation of protein folding and misfolding, including aggregation of misfolded proteins. Other active research topics include global optimisation and investigation of how the thermodynamic and dynamic properties of glasses are related to the underlying PES.

Two recent advances are now providing new insight into larger systems. Discrete path sampling enables dynamical properties to be obtained efficiently, and is being used to calculate folding rates for proteins. Unexpected connections between dynamics and thermodynamics have also been revealed by the application of catastrophe theory to energy landscapes, and new results are now being obtained to characterize phase transitions.

Publications

Double-Bridging Increases the Stability of Zinc(II) Metal–Organic Cages
H Kurz, PCP Teeuwen, TK Ronson, JB Hoffman, P Pracht, DJ Wales, JR Nitschke
J Am Chem Soc
(2024)
146
Design principles for energy transfer in the photosystem II supercomplex from kinetic transition networks.
S-J Yang, DJ Wales, EJ Woods, GR Fleming
Nature Communications
(2024)
15
Guest binding is governed by multiple stimuli in low-symmetry metal-organic cages containing bis-pyridyl(imine) vertices
Y Yang, TK Ronson, PCP Teeuwen, Y Du, J Zheng, DJ Wales, JR Nitschke
Chem
(2024)
11
Efficient Composite Infrared Spectroscopy: Combining the Doubly-Harmonic Approximation with Machine Learning Potentials
P Pracht, Y Pillai, V Kapil, G Csányi, N Gönnheimer, M Vondrák, JT Margraf, DJ Wales
(2024)
Energy landscapes for clusters of hexapeptides
Nicy, JWR Morgan, DJ Wales
The Journal of chemical physics
(2024)
161
Vibrational Energy Landscapes and Energy Flow in GPCRs
H Poudel, DJ Wales, DM Leitner
Journal of Physical Chemistry B
(2024)
128
Explainable Gaussian processes: a loss landscape perspective
MP Niroomand, L Dicks, EO Pyzer-Knapp, DJ Wales
Machine Learning: Science and Technology
(2024)
5
Oscillatory Active State of a Pd Nanocatalyst Identified by In Situ Capture of the Instantaneous Structure-Activity Change at the Atomic Scale.
M Tang, S Li, B Zhu, R You, L Yu, Y Ou, W Yuan, Q Xu, H Yang, DJ Wales, Z Zhang, Y Gao, Y Wang
Journal of the American Chemical Society
(2024)
146
Going for Gold(-Standard): Attaining Coupled Cluster Accuracy in Oxide-Supported Nanoclusters
BX Shi, DJ Wales, A Michaelides, CW Myung
Journal of Chemical Theory and Computation
(2024)
20
Energy landscapes for the quantum approximate optimization algorithm
C Boy, D Wales
Physical Review A (PRA)
(2024)
109

Head of group

Research Interest Groups

Telephone number

01223 336354

Email address