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The Journal of Chemical Physics|February 9, 2021
How a supercooled liquid borrows structure from the crystalUlf R Pedersen, Ian Douglass, Peter HarrowellThe Journal of Physical Chemistry. B|October 1, 2011
Factors contributing to the glass-forming ability of a simulated molecular liquidUlf R Pedersen, Peter HarrowellPhysical Review Letters|April 2, 2019
Formation of Ultrastable Glasses via Precipitation: A Modeling StudyIan Douglass, Peter HarrowellThe Journal of Physical Chemistry. B|January 31, 2018
Kinetics of Dissolution of an Amorphous SolidIan Douglass, Peter HarrowellThe Journal of Chemical Physics|April 6, 2013
Can a stable glass be superheated? Modelling the kinetic stability of coated glassy filmsIan Douglass, Peter HarrowellThe Journal of Chemical Physics|April 17, 2016
Density and glass forming ability in amorphous atomic alloys: The role of the particle softnessIan Douglass, Toby Hudson, Peter HarrowellThe Journal of Chemical Physics|March 25, 2011
Crystallization of the Lewis-Wahnström ortho-terphenyl modelUlf R Pedersen, Toby S Hudson, Peter HarrowellPhysical Review Letters|December 30, 2017
Structural Origin of Enhanced Dynamics at the Surface of a Glassy AlloyGang Sun, Shibu Saw, Ian Douglass, et al.Physical Review Letters|October 9, 2020
Erratum: Structural Origin of Enhanced Dynamics at the Surface of a Glassy Alloy [Phys. Rev. Lett. 119, 245501 (2017)]Gang Sun, Shibu Saw, Ian Douglass, et al.Soft Matter|January 21, 2017
The stabilization of tubular crystals in mixtures of spherical particlesIan Douglass, Helen Mayger, Toby Hudson, et al.Pageof 12