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Chemical Science|March 19, 2019
Building blocks for recognition-encoded oligoesters that form H-bonded duplexesFilip T Szczypiński, Christopher A Hunter
Digital Discovery|May 6, 2022
Explainable graph neural networks for organic cagesQi Yuan, Filip T Szczypiński, Kim E Jelfs
Chemical Science|June 24, 2021
Can we predict materials that can be synthesised?Filip T Szczypiński, Steven Bennett, Kim E Jelfs
The Journal of Chemical Physics|July 9, 2021
stk: An extendable Python framework for automated molecular and supramolecular structure assembly and discoveryLukas Turcani, Andrew Tarzia, Filip T Szczypiński, et al.
Journal of Chemical Information and Modeling|August 13, 2021
Materials Precursor Score: Modeling Chemists' Intuition for the Synthetic Accessibility of Porous Organic Cage PrecursorsSteven Bennett, Filip T Szczypiński, Lukas Turcani, et al.
Angewandte Chemie (International Ed. in English)|April 16, 2015
Designed enclosure enables guest binding within the 4200 å(3) cavity of a self-assembled cubeWilliam J Ramsay, Filip T Szczypiński, Haim Weissman, et al.
Chemistry (Weinheim an Der Bergstrasse, Germany)|February 4, 2020
Organic Cage DumbbellsRebecca L Greenaway, Valentina Santolini, Filip T Szczypiński, et al.
Chemical Science|August 16, 2024
Dynamic and solid-state behaviour of bromoisotrianglimineAbbie M Scholes, Laurence J Kershaw Cook, Filip T Szczypiński, et al.
Nature|November 7, 2024
Autonomous mobile robots for exploratory synthetic chemistryTianwei Dai, Sriram Vijayakrishnan, Filip T Szczypiński, et al.
Angewandte Chemie (International Ed. in English)|June 17, 2020
Inducing Social Self-Sorting in Organic Cages To Tune The Shape of The Internal CavityValentina Abet, Filip T Szczypiński, Marc A Little, et al.
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