Boron-doped diamond (BDD) electrodes are well known for the in situ production of strong oxidants. These antimicrobial agents are produced directly from water without the need of storage or stabilization. An in situ production of reactive oxygen species (ROS) used as antimicrobial agents has also been used in recently developed medical applications. Although BDD electrodes also produce ROS during water electrolysis, only a few medical applications have appeared in the literature to date. This is probably due to the difficulties in the miniaturization of BDD electrodes, while maintaining a stable and efficient electrolytic process in order to obtain a clinical applicability. In this attempt, a cannula-based electrode design was achiev...
This report describes a method to fabricate high-surface-area boron-doped diamond (BDD) electrodes u...
The development of smooth, featureless surfaces for biomedical microelectronics is a challenging fea...
Conducting diamond thin film is a new electrode material that has received great attention recently ...
In the last years doped diamond thin film electrodes have been studied intensively with regard to in...
Boron-doped conductive diamond films applied as electrode material exhibit unique properties in elec...
CVD diamond possesses certain attractive electrochemical properties inter alia low background curren...
DE 29916125 U UPAB: 20000524 NOVELTY - The electrode includes a large-area layer (3) of doped diamon...
Nowadays, synthetic diamond has been studied for its application in wastewater treatment, electroana...
In recent years, conductive diamond electrodes for electrochemical applications have been a major fo...
This report describes a method to fabricate high-surface-area boron-doped diamond (BDD) electrodes u...
Conductive diamond coated electrodes have undergone intensive investigation over the past number of ...
Laboratory tests with model systems and the testing in pilot systems under application-oriented cond...
Boron doped diamond films have been deposited by large area hot-filament CVD (HFCVD) on silicon, sil...
In this work, the use of modified diamond as an electrode material with superlative physical and ele...
Nano-structured electrodes become promising materials for a vast number of applications such as bio-...
This report describes a method to fabricate high-surface-area boron-doped diamond (BDD) electrodes u...
The development of smooth, featureless surfaces for biomedical microelectronics is a challenging fea...
Conducting diamond thin film is a new electrode material that has received great attention recently ...
In the last years doped diamond thin film electrodes have been studied intensively with regard to in...
Boron-doped conductive diamond films applied as electrode material exhibit unique properties in elec...
CVD diamond possesses certain attractive electrochemical properties inter alia low background curren...
DE 29916125 U UPAB: 20000524 NOVELTY - The electrode includes a large-area layer (3) of doped diamon...
Nowadays, synthetic diamond has been studied for its application in wastewater treatment, electroana...
In recent years, conductive diamond electrodes for electrochemical applications have been a major fo...
This report describes a method to fabricate high-surface-area boron-doped diamond (BDD) electrodes u...
Conductive diamond coated electrodes have undergone intensive investigation over the past number of ...
Laboratory tests with model systems and the testing in pilot systems under application-oriented cond...
Boron doped diamond films have been deposited by large area hot-filament CVD (HFCVD) on silicon, sil...
In this work, the use of modified diamond as an electrode material with superlative physical and ele...
Nano-structured electrodes become promising materials for a vast number of applications such as bio-...
This report describes a method to fabricate high-surface-area boron-doped diamond (BDD) electrodes u...
The development of smooth, featureless surfaces for biomedical microelectronics is a challenging fea...
Conducting diamond thin film is a new electrode material that has received great attention recently ...