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研究领域

Research in the Kadodwala group has has three themes: (a) spectroscopic investigations of the electronic properties of nanostructured materials on surfaces; (b) the development of new electron-based chirally sensitive spectroscopic techniques; (c) the develop-ment of novel chiroptical spectroscopic probes. Kadodwala currently holds an MRC discipline-hopping grant (Ref. G0902256), which is directly related to this proposal. The “hop” has enabled him to focus entirely on research and acquiring new skills in the life sciences.

近期论文

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Hendry, E., Mikhaylovskiy, R., Barron, L., Kadodwala, M., and Davis, T.J. (2012) Chiral electromagnetic fields generated by arrays of nanoslits. Nano Letters, 12(7), pp. 3640-3644. (doi:10.1021/nl3012787) Abdulrahman, N.A., Fan, Z., Tonooka, T., Kelly, S.M., Gadegaard, N., Hendry, E., Govorov, A.O., and Kadodwala, M. (2012) Induced chirality through electromagnetic coupling between chiral molecular layers and plasmonic nanostructures. Nano Letters, 12(2), pp. 977-983. (doi:10.1021/nl204055r) Hendry, E., Carpy, T., Johnston, J., Popland, M., Mikhaylovskiy, R.V., Lapthorn, A., Kelly, S.M., Barron, L.D., Gadegaard, N., and Kadodwala, M. (2010) Ultrasensitive detection and characterization of biomolecules using superchiral fields. Nature Nanotechnology, 5(11), pp. 783-787. (doi:10.1038/nnano.2010.209) Fleming, C., Long, D. L., McMillan, N., Johnston, J., Bovet, N., Dhanak, V., Gadegaard, N., Kogerler, P., Cronin, L., and Kadodwala, M. (2008) Reversible electron-transfer reactions within a nanoscale metal oxide cage mediated by metallic substrates. Nature Nanotechnology, 3(4), pp. 229-233. (doi:10.1038/nnano.2008.66)

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