In this paper, it was found that glucose oxidase (GOD) has been stably immobilized on glassy carbon electrode modified with mesoporous carbon FDU-15 (MC-FDU-15) and Nafion by simple technique. The sorption behavior of GOD immobilized on MC-FDU-15 matrix was characterized by transmission electron microscopy (TEM), ultraviolet-visible (UV-vis), FTIR, respectively, which demonstrated that MC-FDU-15 could facilitate the electron exchange between the active center of GOD and electrode. The direct electrochemistry and electrocatalysis behavior of GOD on the modified electrode were characterized by cyclic voltammogram (CV) which indicated that GOD immobilized on Nafion and MC-FDU-15 matrices display direct, reversible and surface-controlled redox ...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Glucose oxidase (GOx) is widely used in the glucose biosensor industry. However, mediatorless direct...
This research reveals the improved performance of bioelectrodes made with amination-modified glucose...
In this paper, it was found that glucose oxidase (GOD) has been stably immobilized on glassy carbon ...
Cyclic voltammetry is employed to demonstrate feasibility of direct electron transfer of glucose oxi...
Glucose oxidase (GOD) was attached to glassy carbon electrodes by covalent binding with dicyclohexyl...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
In the present study, a glucose oxidase (GluOx) direct electron transfer was realized on an aminated...
Efficient electron transfer between redox enzymes and electrodes is essential for enzyme-based biose...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Glucose oxidase (GOx) is widely used in the glucose biosensor industry. However, mediatorless direct...
This research reveals the improved performance of bioelectrodes made with amination-modified glucose...
In this paper, it was found that glucose oxidase (GOD) has been stably immobilized on glassy carbon ...
Cyclic voltammetry is employed to demonstrate feasibility of direct electron transfer of glucose oxi...
Glucose oxidase (GOD) was attached to glassy carbon electrodes by covalent binding with dicyclohexyl...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
Conductive cellulose-multiwalled carbonnanotube (MWCNT) matrix with a porous structure and good bioc...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
In the present study, a glucose oxidase (GluOx) direct electron transfer was realized on an aminated...
Efficient electron transfer between redox enzymes and electrodes is essential for enzyme-based biose...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Stabilization and electrical contacting of redox enzymes with electrodes are fundamental requirement...
Glucose oxidase (GOx) is widely used in the glucose biosensor industry. However, mediatorless direct...
This research reveals the improved performance of bioelectrodes made with amination-modified glucose...