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themselves having the wrong conformations or crystallising in a competing crystal polymorph, is a much broader phenomenon. On the theoretical side of the project, we aim to construct a new kinetic framework of
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are small organic molecules (MoSS). There is huge potential of utilising MoSS for changing and modulating materials properties, such as solubilities, crystal polymorph, crystal sizes and shapes and rates
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in a competing crystal polymorph, is a much broader phenomenon. On the theoretical side of the project, we aim to construct a new kinetic framework of polymer crystal growth that would reproduce
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that classical theories were unable to handle. Together with other members of the Polymers and Liquid Crystals group, led by Dr. Xiangbing Zeng in the School of Chemical, Mathematical and Biological Engineering
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single-crystal and powder); In situ variable-pressure crystallography; Supramolecular chemistry and crystal engineering (including experience with concepts such as polymorphism, co-crystals, solvates