Gulay, Nataliya L.Zanella, MarcoRobertson, Craig M.Ritchie, DanielSonni, ManelWright, Matthew A.Newnham, Jon A.Hawkins, Cara J.Whitworth, JayneMali, Bhupendra P.Niu, HongjunDyer, Matthew S.Collins, Christopher M.Daniels, Luke M.Claridge, John B.Rosseinsky, Matthew J.2025-10-302024-10-28Gulay, N L, Zanella, M, Robertson, C M, Ritchie, D, Sonni, M, Wright, M A, Newnham, J A, Hawkins, C J, Whitworth, J, Mali, B P, Niu, H, Dyer, M S, Collins, C M, Daniels, L M, Claridge, J B & Rosseinsky, M J 2024, 'Navigation through high-dimensional chemical space : discovery of Ba5Y13[SiO4]8O8.5 and Ba3Y2[Si2O7]2', Chemical Science, vol. 15, no. 40, pp. 16503-16518. https://doi.org/10.1039/D4SC04440A2041-6539ORCID: /0000-0002-8408-7232/work/167896845https://hdl.handle.net/2164/26328CC, DR thank the Leverhulme Research Centre for Functional Materials Design. We thank R. Smith and I. da Silva for assistance on Polaris (ISIS). Experiments at the ISIS Neutron and Muon Source were supported by beamtime allocation XB2390021 and XB2390061 from the Science and Technology Facilities Council.63454389engNo substantive connection to the University of AberdeenQD ChemistryQDNavigation through high-dimensional chemical space : discovery of Ba5Y13[SiO4]8O8.5 and Ba3Y2[Si2O7]2Journal article10.1039/D4SC04440A