In search for a better way to monitor the hybridization and denaturation of DNA onto a diamond based sensor, precise knowledge about the conditions of the immediate surroundings is very critical. One of the factors that have a great influence on the stability of the measurements is the temperature of the liquid environment in which these measurements take place. With this as a focal point, the design of a precise temperature regulator based on a boron doped diamond thin film is a key factor to achieve accurate measurements on a standalone basis. In this work temperature control is achieved making use of a thin boron doped nanocrystalline diamond (B-NCD) film, which, in combination with a proportional-integral-derivative-control (PID), is ab...
A new thermochernical sensor was developed exploiting the unique properties of CVD-diamond. The ther...
The possibility to realize a high sensitive thermocouple by means of boron doped chemical vapour dep...
International audienceDiamond Schottky diodes have been realized worldwide showing high figures of m...
In search for a better way to monitor the hybridization and denaturation of DNA onto a diamond based...
Recently, the concept of creating a boron doped nanocrystalline diamond (B-NCD) based temperature re...
In this paper, the effect of boron doping on the electrical, morphological and structural properties...
The design, fabrication and test of piezoresistive sensors based on nanocrystalline diamond (NCD) fi...
Diamond possesses such outstanding properties that its exploitation in many fields is sought for sev...
In the ideal form diamond displays extreme physical, optical and electronic properties, making this ...
Diamond is a promising material for implantable electrodes due to its unique properties. The aim of ...
International audienceDiamond is wide band gap semiconductor presenting many extreme properties. It ...
Sensitive probing of temperature variations on nanometre scales is an outstanding challenge in many ...
In recent years, conductive diamond electrodes for electrochemical applications have been a major fo...
A new thermochernical sensor was developed exploiting the unique properties of CVD-diamond. The ther...
The possibility to realize a high sensitive thermocouple by means of boron doped chemical vapour dep...
International audienceDiamond Schottky diodes have been realized worldwide showing high figures of m...
In search for a better way to monitor the hybridization and denaturation of DNA onto a diamond based...
Recently, the concept of creating a boron doped nanocrystalline diamond (B-NCD) based temperature re...
In this paper, the effect of boron doping on the electrical, morphological and structural properties...
The design, fabrication and test of piezoresistive sensors based on nanocrystalline diamond (NCD) fi...
Diamond possesses such outstanding properties that its exploitation in many fields is sought for sev...
In the ideal form diamond displays extreme physical, optical and electronic properties, making this ...
Diamond is a promising material for implantable electrodes due to its unique properties. The aim of ...
International audienceDiamond is wide band gap semiconductor presenting many extreme properties. It ...
Sensitive probing of temperature variations on nanometre scales is an outstanding challenge in many ...
In recent years, conductive diamond electrodes for electrochemical applications have been a major fo...
A new thermochernical sensor was developed exploiting the unique properties of CVD-diamond. The ther...
The possibility to realize a high sensitive thermocouple by means of boron doped chemical vapour dep...
International audienceDiamond Schottky diodes have been realized worldwide showing high figures of m...