Malcolm Kadodwala
Affiliations: | Chemistry | University of Glasgow, Glasgow, Scotland, United Kingdom |
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Publications
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Rodier M, Keijzer C, Milner J, et al. (2019) Probing Specificity of Protein–Protein Interactions with Chiral Plasmonic Nanostructures Journal of Physical Chemistry Letters. 10: 6105-6111 |
Gilroy C, Hashiyada S, Endo K, et al. (2019) Roles of superchirality and interference in chiral plasmonic biodetection Journal of Physical Chemistry C. 123: 15195-15203 |
Kelly C, Tullius R, Lapthorn A, et al. (2018) Chiral Plasmonic Fields Probe Structural Order of Biointerfaces. Journal of the American Chemical Society |
Paterson GW, Karimullah AS, Smith SG, et al. (2018) Symmetry Reduction and Shape Effects in Concave Chiral Plasmonic Structures Journal of Physical Chemistry C |
Tullius R, Platt GW, Khosravi Khorashad L, et al. (2017) Superchiral Plasmonic Phase Sensitivity for Fingerprinting of Protein Interface Structure. Acs Nano |
Jack C, Karimullah AS, Leyman R, et al. (2016) Biomacromolecular stereostructure mediates mode hybridization in chiral plasmonic nanostructures. Nano Letters |
Tullius R, Karimullah AS, Rodier M, et al. (2015) "Superchiral" Spectroscopy: Detection of Protein Higher Order Hierarchical Structure with Chiral Plasmonic Nanostructures. Journal of the American Chemical Society |
King MO, McLeod IM, Hesp D, et al. (2014) The templated growth of a chiral transition metal chalcogenide Surface Science. 629: 94-101 |
Lahti M, Chaudhuri A, Pussi K, et al. (2014) The structural analysis of Cu(111)-Te 3 × 3 R30 and 2 3 × 2 3 R30 surface phases by quantitative LEED and DFT Surface Science. 622: 35-43 |
Abdulrahman N, Syme CD, Jack C, et al. (2013) The origin of off-resonance non-linear optical activity of a gold chiral nanomaterial. Nanoscale. 5: 12651-7 |