Probe DNA, consisting of a 36-mer fragment was covalently immobilized on nanocrystalline chemical vapour deposition (CVD) diamond electrodes and hybridized with a 29-mer target DNA. In this paper, we report on the label-free real-time electronic monitoring of DNA denaturation upon exposure to NaOH at different flow rates and molarities, using electrochemical impedance spectroscopy as readout technology. The impedance response was separated into a denaturation time constant and a medium exchange time constant by means of a double exponential fit. It was observed that the denaturation time is dependent on the flow rate as well as on the molarity of the NaOH. Surprisingly, it was observed that at low molarities (0.05 M) the DNA does not fully ...
Many researchers have fabricated micro and nanofluidic devices incorporating optical, chemical, and ...
We report preparation of a novel platform for effective DNA hybridization and its application to the...
We report on impedance measurements of fluids to examine the impact of the length and concentration ...
Probe DNA, consisting of a 36-mer fragment was covalently immobilized on nanocrystalline chemical va...
In this article, we report on the electronic monitoring of DNA denaturation by NaOH using electroche...
Most challenging in the development of DNA sensors is the ability to distinguish between fully compl...
International audienceWe report the detection of DNA denaturation using diamond micro-cantilevers op...
In this article, we report on a label-free real-time method based on heat transfer resistivity for t...
In this article, we report on the label-free real-time thermal monitoring of the denaturation of spe...
This thesis describes the development and improvement of an assay for the detection and discriminati...
Label-free, rapid detection of biomolecules in microliter volumes of highly diluted solutions (subfe...
Label-free, rapid detection of biomolecules in microliter volumes of highly diluted solutions (sub-f...
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
A nanowell array electrode-based electrochemical quantitative system without amplification was devel...
Many researchers have fabricated micro and nanofluidic devices incorporating optical, chemical, and ...
We report preparation of a novel platform for effective DNA hybridization and its application to the...
We report on impedance measurements of fluids to examine the impact of the length and concentration ...
Probe DNA, consisting of a 36-mer fragment was covalently immobilized on nanocrystalline chemical va...
In this article, we report on the electronic monitoring of DNA denaturation by NaOH using electroche...
Most challenging in the development of DNA sensors is the ability to distinguish between fully compl...
International audienceWe report the detection of DNA denaturation using diamond micro-cantilevers op...
In this article, we report on a label-free real-time method based on heat transfer resistivity for t...
In this article, we report on the label-free real-time thermal monitoring of the denaturation of spe...
This thesis describes the development and improvement of an assay for the detection and discriminati...
Label-free, rapid detection of biomolecules in microliter volumes of highly diluted solutions (subfe...
Label-free, rapid detection of biomolecules in microliter volumes of highly diluted solutions (sub-f...
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
A nanowell array electrode-based electrochemical quantitative system without amplification was devel...
Many researchers have fabricated micro and nanofluidic devices incorporating optical, chemical, and ...
We report preparation of a novel platform for effective DNA hybridization and its application to the...
We report on impedance measurements of fluids to examine the impact of the length and concentration ...