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研究领域

Dr Spencer’s research expertise is in the area of materials and nanostructures for applications in electronic devices, gas sensors and batteries. In particular she specialises in using density functional theory and ab initio molecular dynamics simulations to determine the structure, dynamic properties and surface reactions of these materials.

近期论文

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Rees, R.,Spencer, M. (2016). The science and life of Ian K. Snook In: Molecular Simulation, 42, 448 - 457 Brack, N.,Kappen, P.,Spencer, M.,Herries, A.,Rider, A. (2016). Manipulation of carbon nanotube magnetism with metal-rich iron nanoparticles In: Journal of Materials Chemistry C, 4, 1215 - 1227 Yaokawa, R.,Ohsuna, T.,Morishita, T.,Hayasaka, Y.,Spencer, M.,Nakano, H. (2016). Monolayer-to-bilayer transformation of silicenes and their structural analysis In: Nature Communications, 7, 1 - 6 Brennan, M.,Morishita, T.,Spencer, M. (2016). Tuning the band gap of silicene by functionalisation with naphthyl and anthracyl groups In: The Journal of Chemical Physics, 144, 114704-1 - 114704-11 Morishita, T.,Spencer, M. (2016). Free-Standing Multilayer Silicene: Molecular-Dynamics and Density Functional Theory Studies In: Silicene, Springer, Switzerland Spencer, M.,Morishita, T. (2016). Theoretical Studies of Functionalised Silicene In: Silicene, Springer, Switzerland Bassett, M.,Morishita, T.,Wilson, H.,Barnard, A.,Spencer, M. (2016). Phenol-modified silicene: preferred substitution site and electronic properties In: Journal of Physical Chemistry Part C, 120, 6762 - 6770 Burke, M.,Small, D.,Antolasic, F.,Hughes, J.,Spencer, M.,Blanch, E.,Jones, O. (2016). (In press) Infra-red spectroscopy-based metabolomic analysis for the detection of pre-harvest sprouting in grain In: Cereal Chemistry, , 1 - 11 Nguyen, E.,Carey, B.,Ou, J.,van Embden, J.,Della Gaspera, E.,Chrimes, A.,Spencer, M.,Zhuiykov, S.,Kalantar Zadeh, K.,Daeneke, T. (2015). Electronic tuning of 2D MoS2 through surface functionalization In: Advanced Materials, 27, 6225 - 6229 Morishita, T.,Spencer, M. (2015). How silicene on Ag(111) oxidizes: Microscopic mechanism of the reaction of O2 with silicene In: Scientific Reports, 5, 1 - 10

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