Dissolved oxygen (DO) is an important parameter to monitor in processes applicable in, for example, water technology and fermentation. In this study, we report the manufacturing of a membrane-less amperometric sensor that is based on the electrocatalytic reduction of oxygen. The sensor was tested in pH-neutral KNO3 solutions and in a microbial fermentation to monitor the consumption of dissolved oxygen. The nitrogen and boron-doped reduced graphene oxide (N,B-HRGO) is used as an electrocatalyst for oxygen reduction. One step co-doping of nitrogen and boron on graphene oxide is performed using the hydrothermal method. The sensor responded linearly to the DO concentration. A sensitivity of 0.2 mu A/mg.L-1 O-2 is obtained for the DO concentrat...
An effective ferricyanide-mediated microbial biochemical oxygen demand (BOD) biosensor was construct...
AbstractA novel microelectrode array (DO-MEA) sensor was designed and fabricated using microelectrom...
Standard photolithographic techniques and a nitric oxide (NO) selective xerogel polymer were utilize...
Dissolved oxygen (DO) is an important parameter to monitor in processes applicable in, for example, ...
We developed a nitrogen and boron-doped reduced graphene oxide (N, B-HRGO) based chemiresistive sens...
We developed a reference-less, chemiresistive, solid-state pH sensor to determine the acidification ...
Here we report potentiometric and chemiresistive pH sensing performance of polyaniline functionalize...
Here, we report the engineering of a solid-state micro pH sensor based on polyaniline-functionalized...
In this master thesis, optical dissolved oxygen (DO) sensors are compared to standard electrochemica...
A reagent-less sensing probe has been developed using hydrothermally reduced graphene oxide (HRGO) a...
A novel microelectrode array (DO-MEA) sensor was designed and fabricated using microelectromechanica...
A Universal Amperometric Membrane-Covered Gas-Sensing Electrode System has been designed which can b...
A novel microelectrode array (DO-MEA) sensor was designed and fabricated using microelectromechanica...
An effective ferricyanide-mediated microbial biochemical oxygen demand (BOD) biosensor was construct...
AbstractA novel microelectrode array (DO-MEA) sensor was designed and fabricated using microelectrom...
Standard photolithographic techniques and a nitric oxide (NO) selective xerogel polymer were utilize...
Dissolved oxygen (DO) is an important parameter to monitor in processes applicable in, for example, ...
We developed a nitrogen and boron-doped reduced graphene oxide (N, B-HRGO) based chemiresistive sens...
We developed a reference-less, chemiresistive, solid-state pH sensor to determine the acidification ...
Here we report potentiometric and chemiresistive pH sensing performance of polyaniline functionalize...
Here, we report the engineering of a solid-state micro pH sensor based on polyaniline-functionalized...
In this master thesis, optical dissolved oxygen (DO) sensors are compared to standard electrochemica...
A reagent-less sensing probe has been developed using hydrothermally reduced graphene oxide (HRGO) a...
A novel microelectrode array (DO-MEA) sensor was designed and fabricated using microelectromechanica...
A Universal Amperometric Membrane-Covered Gas-Sensing Electrode System has been designed which can b...
A novel microelectrode array (DO-MEA) sensor was designed and fabricated using microelectromechanica...
An effective ferricyanide-mediated microbial biochemical oxygen demand (BOD) biosensor was construct...
AbstractA novel microelectrode array (DO-MEA) sensor was designed and fabricated using microelectrom...
Standard photolithographic techniques and a nitric oxide (NO) selective xerogel polymer were utilize...