We are reporting fabrication and characterization of electrochemical sucrose biosensor using ultra-microelectrode (UME) for the detection of heavy metal ions (Hg(II), Ag(I), Pb(II) and Cd(II)). The working UME, with 25 μ m diameter, was modified with invertase (INV, EC: 3.2.1.26) and glucose oxidase (GOD, EC: 1.1.3.4) entrapped in agarose-guar gum. The hydrophilic character of the agarose-guar gum composite matrix was checked by water contact angle measurement. The atomic force microscopy (AFM) images of the membranes showed proper confinement of both the enzymes during co-immobilization. The dynamic range for sucrose biosensor was achieved in the range of 1 × 10<SUP>-10</SUP> to 1 × 10<SUP>-7</SUP> M with lower detection limit 1 × 10<SUP>-...
A novel feature of biologically active polymer created by copolymerisation of glutaraldehyde (GA) wi...
The heavy metals pollution represents one of the important issues in the environmental field since i...
The aim of the work was the modification of a carbon nanotube paste electrode with a highly original...
The work describes the original application of biosensors based on enzyme immobilised by electropoly...
In this study, an ultramicro interdigital electrode array chip (UIEA) was designed and fabricated by...
A screen-printed electrode amperometric biosensor based on glucose oxidase was successfully used fo...
An amperometric glucose biosensor based on glucose oxidase immobilized in electrosynthesized poly-o-...
Research was aimed at the optimization of the urease biosensor for analysis of heavy metals and dete...
Abstract A biosensor for the determination of heavy metal cations based on glucose oxidase enzymati...
This work describes the facile preparation of a disposable electrochemical biosensor for the detecti...
The inhibition effect of the selected heavy metals (Ag+, Cd2+, Cu2+, and Hg2+) on glucose oxidase (G...
Electrochemical sensors and biosensors combine the sensitivity of electroanalytical methods with the...
A potentiometric glucose biosensor based on immobilization of glucose oxidase (GOD) on ZnO nanorods ...
<b>The presence of heavy metal in food chains due to the rapid industrialization poses a serious thr...
In this study we investigated the role of metals in electrochemical biosensors. These roles can be s...
A novel feature of biologically active polymer created by copolymerisation of glutaraldehyde (GA) wi...
The heavy metals pollution represents one of the important issues in the environmental field since i...
The aim of the work was the modification of a carbon nanotube paste electrode with a highly original...
The work describes the original application of biosensors based on enzyme immobilised by electropoly...
In this study, an ultramicro interdigital electrode array chip (UIEA) was designed and fabricated by...
A screen-printed electrode amperometric biosensor based on glucose oxidase was successfully used fo...
An amperometric glucose biosensor based on glucose oxidase immobilized in electrosynthesized poly-o-...
Research was aimed at the optimization of the urease biosensor for analysis of heavy metals and dete...
Abstract A biosensor for the determination of heavy metal cations based on glucose oxidase enzymati...
This work describes the facile preparation of a disposable electrochemical biosensor for the detecti...
The inhibition effect of the selected heavy metals (Ag+, Cd2+, Cu2+, and Hg2+) on glucose oxidase (G...
Electrochemical sensors and biosensors combine the sensitivity of electroanalytical methods with the...
A potentiometric glucose biosensor based on immobilization of glucose oxidase (GOD) on ZnO nanorods ...
<b>The presence of heavy metal in food chains due to the rapid industrialization poses a serious thr...
In this study we investigated the role of metals in electrochemical biosensors. These roles can be s...
A novel feature of biologically active polymer created by copolymerisation of glutaraldehyde (GA) wi...
The heavy metals pollution represents one of the important issues in the environmental field since i...
The aim of the work was the modification of a carbon nanotube paste electrode with a highly original...