© 2017 Elsevier Ltd Semiconducting electrodes that are in depletion, can support appreciable electron transfer only when illuminated. This phenomenon has been implemented on silicon electrodes passivated by a protective organic self-assembled monolayer (SAM) to confine electrochemistry to microscale regions on an unstructured electrode surface by shining light only on those regions. This method, referred to as light-activated electrochemistry (LAE), has so far only been studied using electrodes with surface-bound redox mediators that are either covalently or electrostatically attached to a SAM-modified silicon electrode. In the current report, we extend LAE to redox species in solution using gold nanoparticles (AuNPs) attached to the SAM-mo...
Electrochemical sensors are important for a variety of applications. However, they suffer from physi...
In this paper we explore a multi-step synthetic strategy toward fabrication of monolayer-modified Si...
The electrochemical functionalization of a Au electrode with a redox-active monolayer and the electr...
Light-activated electrochemistry is a powerful concept, where faradaic electrochemistry at a monolay...
We seek to understand how the thermodynamics and kinetics of anthraquinone-containing self-assembled...
We seek to understand how the thermodynamics and kinetics of anthraquinone-containing self-assembled...
We seek to understand how the thermodynamics and kinetics of anthraquinone-containing self-assembled...
This thesis introduces a unique strategy that allows micrometer sized redox events at any location o...
The immobilization of gold nanoparticles (AuNPs) on functionalized electrodes has been shown to be a...
Electrochemical sensors are important for a variety of applications. However, they suffer from physi...
The concept of light-activated electrochemistry (LAE) was recently presented where faradaic electroc...
The concept of light-activated electrochemistry (LAE) was recently presented where faradaic electroc...
The immobilization of gold nanoparticles (AuNPs) on functionalized electrodes has been shown to be a...
Bioelectronics is an active and progressive area of research associated with biochemistry, electroch...
Over the last three decades, research on redox-active monolayers has consolidated their importance a...
Electrochemical sensors are important for a variety of applications. However, they suffer from physi...
In this paper we explore a multi-step synthetic strategy toward fabrication of monolayer-modified Si...
The electrochemical functionalization of a Au electrode with a redox-active monolayer and the electr...
Light-activated electrochemistry is a powerful concept, where faradaic electrochemistry at a monolay...
We seek to understand how the thermodynamics and kinetics of anthraquinone-containing self-assembled...
We seek to understand how the thermodynamics and kinetics of anthraquinone-containing self-assembled...
We seek to understand how the thermodynamics and kinetics of anthraquinone-containing self-assembled...
This thesis introduces a unique strategy that allows micrometer sized redox events at any location o...
The immobilization of gold nanoparticles (AuNPs) on functionalized electrodes has been shown to be a...
Electrochemical sensors are important for a variety of applications. However, they suffer from physi...
The concept of light-activated electrochemistry (LAE) was recently presented where faradaic electroc...
The concept of light-activated electrochemistry (LAE) was recently presented where faradaic electroc...
The immobilization of gold nanoparticles (AuNPs) on functionalized electrodes has been shown to be a...
Bioelectronics is an active and progressive area of research associated with biochemistry, electroch...
Over the last three decades, research on redox-active monolayers has consolidated their importance a...
Electrochemical sensors are important for a variety of applications. However, they suffer from physi...
In this paper we explore a multi-step synthetic strategy toward fabrication of monolayer-modified Si...
The electrochemical functionalization of a Au electrode with a redox-active monolayer and the electr...