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研究领域

My research interests are primarily focused on the investigation and development of metal oxide/chalcogenide based surfaces for energy applications (H2 production, water oxidation, catalytic processes etc.). The current research is dedicated to the discovery of simple preparation routes to mesoporous polyoxometalate-based composite materials for oxidative catalysis and understanding of fundamental processes in the self-assembly of supramolecular coordination compounds with modular magnetic properties as well as the investigation of their electronic structure, electrochemical behaviour and electrocatalytic activity.

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Wilson, E.F., Miras, H.N., Rosnes, M.H., and Cronin, L. (2011) Real-time observation of the self-assembly of hybrid polyoxometalates using mass spectrometry. Angewandte Chemie (International Edition), 50(16), pp. 3720-3724. (doi:10.1002/anie.201006938) Zang, H., Chen, J.-J., Long, D.-L., Cronin, L., and Miras, H. N. (2013) Assembly of thiometalate-based [Mo16] and [Mo36] composite clusters combining [Mo2O2S2],2+ cations and selenite anions. Advanced Materials, 25(43), pp. 6245-6249. (doi:10.1002/adma.201302565) Tsunashima, R., Long, D.L., Miras, H.N., Gabb, D., Pradeep, C.P., and Cronin, L. (2010) The construction of high-nuclearity isopolyoxoniobates with pentagonal building blocks: [HNb27O76](16-) and [H10Nb31O93(CO3)](23-). Angewandte Chemie (International Edition), 49(1), pp. 113-116. (doi:10.1002/anie.200903970) Miras, H.N., Cooper, G.J.T., Long, D.-L., Bogge, H., Muller, A., Streb, C., and Cronin, L. (2010) Unveiling the transient template in the self-assembly of a molecular oxide nanowheel. Science, 327(5961), pp. 72-74. (doi:10.1126/science.1181735)

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