21 results on '"Gooding, J. Justin"'
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2. Controlling hydrogen evolution reaction activity on Ni core–Pt island nanoparticles by tuning the size of the Pt islands
3. Zero-valent iron core–iron oxide shell nanoparticles coated with silica and gold with high saturation magnetization
4. Spatially localized electrodeposition of multiple metals via light-activated electrochemistry for surface enhanced Raman spectroscopy applications
5. Zero valent iron core–iron oxide shell nanoparticles as small magnetic particle imaging tracers
6. High-resolution light-activated electrochemistry on amorphous silicon-based photoelectrodes
7. Amorphous silicon on indium tin oxide: a transparent electrode for simultaneous light activated electrochemistry and optical microscopy
8. Intrinsic and well-defined second generation hot spots in gold nanobipyramids versus gold nanorods
9. Wafer-scale fabrication of a Cu/graphene double-nanocap array for surface-enhanced Raman scattering substrates
10. Gold coated magnetic nanoparticles: from preparation to surface modification for analytical and biomedical applications
11. One-pot synthesis of colloidal silicon quantum dots and surface functionalization via thiol–ene click chemistry
12. A facile enantioseparation for amino acids enantiomers using β-cyclodextrins functionalized Fe3O4 nanospheres
13. ‘Dispersible electrodes’: a solution to slow response times of sensitive sensors
14. Unusually rapid heterogeneous electron transfer through a saturated bridge 18 bonds in length
15. The ion gating effect: using a change in flexibility to allow label free electrochemical detection of DNA hybridisationElectronic supplementary information (ESI) available: CVs: ss-DNA modified electrode exposed to a non-complementary sequence; MCE-modified gold electrode. See http://www.rsc.org/suppdata/cc/b3/b305798b/
16. Sub-ppt detection limits for copper ions with Gly-Gly-His modified electrodes
17. The importance of surface chemistry in mesoporous materials: lessons from porous silicon biosensors.
18. A robust DNA interface on a silicon electrode.
19. A facile enantioseparation for amino acids enantiomers using β-cyclodextrins functionalized Fe3O4nanospheresElectronic supplementary information (ESI) available: Additional figures and text giving general experimental procedures. See DOI: 10.1039/c1cc13734d
20. Unusually rapid heterogeneous electron transfer through a saturated bridge 18 bonds in length.
21. Demonstration of the importance of oxygenated species at the ends of carbon nanotubes for their favourable electrochemical propertiesElectronic supplementary information (ESI) available: TEM images of cut SWNTs, AFM images of aligned carbon nanotubes, infrared spectra, and experimental procedures. See http://www.rsc.org/suppdata/cc/b4/b415051a/
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