Direct Mapping of Heterogeneous Surface Coverage in DNA-Functionalized Gold Surfaces with Correlated Electron and Fluorescence Microscopy.
Application of FRET Microscopy to the Study of the Local Environment and Dynamics of DNA SAMs on Au Electrodes.

Application of FRET Microscopy to the Study of the Local Environment and Dynamics of DNA SAMs on Au Electrodes.

A. Verhaven, T. Doneux and D. Bizzotto, Langmuir, 2018, acs.langmuir.8b02131.  

In Situ Spectroelectrochemical Fluorescence Microscopy for Studying Electrodes Modified by Molecular Adsorbates.
A non-linear harmonic analysis of potential induced fluorescence modulation of a DNA self assembled monolayer

A non-linear harmonic analysis of potential induced fluorescence modulation of a DNA self assembled monolayer

Z. L. Yu, K. K. Leung, H. Z. Yu and D. Bizzotto, Electrochim. Acta, 2017, 245, 386–394.

Tailoring the DNA SAM Surface Density on Different Surface Crystallographic Features Using Potential Assisted Thiol Exchange.

Tailoring the DNA SAM Surface Density on Different Surface Crystallographic Features Using Potential Assisted Thiol Exchange.

  K. K. Leung, A. D. Gaxiola, H. Z. Yu and D. Bizzotto, Electrochim. Acta 2018, 261, 188–197.

Beyond Simple Cartoons: Challenges in Characterizing Electrochemical Biosensor Interfaces.

Beyond Simple Cartoons: Challenges in Characterizing Electrochemical Biosensor Interfaces.

  D. Bizzotto, I. J. Burgess, T. Doneux, T. Sagara and H. Z. Yu, ACS Sens., 2018, 3, 5–12.  

Quantifying the Selective Modification of Au(111) Facets via Electrochemical and Electroless Treatments for Manipulating Gold Nanorod Surface Composition

Quantifying the Selective Modification of Au(111) Facets via Electrochemical and Electroless Treatments for Manipulating Gold Nanorod Surface Composition

E. A. Fisher, K. K. Leung, J. Casanova-Moreno, T. Masuda, J. Young and D. Bizzotto, Langmuir 2017, 33 (45), 12887–12896.

Measuring and remediating non-specific modifications of gold surfaces using a coupled in-situ electrochemical fluorescence microscopic methodology

Measuring and remediating non-specific modifications of gold surfaces using a coupled in-situ electrochemical fluorescence microscopic methodology

Z. L. Yu, C. W. T. Yang, E. Triffaux, T. Doneux, R. F. B. Turner and D. Bizzotto, Anal. Chem. 2017, 89 (1), 886–894.

Influence of Surface Structure on Single or Mixed Component Self-Assembled Monolayers via in Situ Spectroelectrochemical Fluorescence Imaging of the Complete Stereographic Triangle on a Single Crystal Au Bead Electrode
On the Nature of DNA Self-Assembled Monolayers on Au: Measuring Surface Heterogeneity with Electrochemical in Situ Fluorescence Microscopy.

On the Nature of DNA Self-Assembled Monolayers on Au: Measuring Surface Heterogeneity with Electrochemical in Situ Fluorescence Microscopy.

J. N. Murphy, A. K. H. Cheng, H. Z. Yu and D. Bizzotto, J. Am. Chem. Soc 2009, 131, 4042–4050.