Here we report on the effect of DNA modification on individual collisions between Pt nanoparticles (PtNPs) and ultramicroelectrode (UME) surfaces. These results extend recent reports of electrocatalytic amplification (ECA) arising from collisions between naked surfaces, and they are motivated by our interest in using ECA for low-level biosensing applications. In the present case, we studied collisions between naked PtNPs and DNA-modified Au and Hg UMEs and also collisions between DNA-modified PtNPs and naked Au and Hg UMEs. In all cases, the sensing reaction is the catalytic oxidation of N<sub>2</sub>H<sub>4</sub>. The presence of ssDNA (5-mer or 25-mer) immobilized on the UME surface has little effect on the magnitude or frequency of ECA s...
7 pagesInternational audienceAfter showing the failure of conventional gold-enhancement procedures t...
Despite the variety of nucleic acid sensors developed, we still do not have definite answers to some...
There have been many important technological advances for development of electrochemical approaches ...
We report a new and general approach that will be useful for adapting the method of electrocatalytic...
Here we report a sensing scheme for detection of microRNA (miRNA) using electrocatalytic amplificati...
Rational utilization of nanomaterials to construct electrochemical nucleic acid sensors has attracte...
An efficient electrocatalytic hydrogen evolution reaction (HER) with ultralow loading of Pt has been...
Electrochemical biosensors transduce biochemical events (e.g., DNA hybridization) to electrical sign...
The electrochemical detection of nucleic acids using an electrocatalytic reporter system and nanostr...
Electrocatalysis is often thought of solely in the inorganic realm, most often applied to energy con...
We demonstrate good agreement between the theoretical and experimental collision frequency of indivi...
A new method to increase the active area (A (act)) of nanoelectrode ensembles (NEEs) is described. T...
Here, we report on the electrochemical detection of individual collisions between a conjugate consis...
Electrocatalysis offers a means of electrochemical signal amplification, yet in DNA-based sensors, e...
One of the major challenges in analytical chemistry is reducing the detection limit of an analyte do...
7 pagesInternational audienceAfter showing the failure of conventional gold-enhancement procedures t...
Despite the variety of nucleic acid sensors developed, we still do not have definite answers to some...
There have been many important technological advances for development of electrochemical approaches ...
We report a new and general approach that will be useful for adapting the method of electrocatalytic...
Here we report a sensing scheme for detection of microRNA (miRNA) using electrocatalytic amplificati...
Rational utilization of nanomaterials to construct electrochemical nucleic acid sensors has attracte...
An efficient electrocatalytic hydrogen evolution reaction (HER) with ultralow loading of Pt has been...
Electrochemical biosensors transduce biochemical events (e.g., DNA hybridization) to electrical sign...
The electrochemical detection of nucleic acids using an electrocatalytic reporter system and nanostr...
Electrocatalysis is often thought of solely in the inorganic realm, most often applied to energy con...
We demonstrate good agreement between the theoretical and experimental collision frequency of indivi...
A new method to increase the active area (A (act)) of nanoelectrode ensembles (NEEs) is described. T...
Here, we report on the electrochemical detection of individual collisions between a conjugate consis...
Electrocatalysis offers a means of electrochemical signal amplification, yet in DNA-based sensors, e...
One of the major challenges in analytical chemistry is reducing the detection limit of an analyte do...
7 pagesInternational audienceAfter showing the failure of conventional gold-enhancement procedures t...
Despite the variety of nucleic acid sensors developed, we still do not have definite answers to some...
There have been many important technological advances for development of electrochemical approaches ...