The high surface areas of nanostructured electrodes can provide for significantly enhanced surface loadings of electroactive materials. The fabrication and characterization of nanoporous gold (np-Au) substrates as electrodes for bioelectrochemical applications is described. Robust np-Au electrodes were prepared by sputtering a gold-silver alloy onto a glass support and subsequent dealloying of the silver component. Alloy layers were prepared with either a uniform or nonuniform distribution of silver and, post dealloying, showed clear differences in morphology on characterization with scanning electron microscopy. Redox reactions under kinetic control, in particular measurement of the charge required to strip a gold oxide layer, provided the...
The effect of electrode porosity on the electrochemical response of redox active molecules (potassiu...
peer-reviewedNanoporous gold (NPG) obtained via dealloying of Au alloys has potential applications i...
Fabrication of nanoporous electrodes for sensing applications By Md Rezaul Karim Khan, Ph.D. A diss...
The high surface areas of nanostructured electrodes can provide for significantly enhanced surface l...
The high surface areas of nanostructured electrodes can provide for significantly enhanced surface l...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
peer-reviewedRobust nanoporous gold electrodes were fabricated by sputtering a gold-silver alloy on...
The importance of porous materials has risen substantially in the last few decades due to their abil...
Nanoporous gold electrodes were fabricated with a novel method: Silver-epoxy was painted on gold sur...
This work describes the use of nanoporous gold as an electrode material for biosensing applications....
High surface area gold electrodes are very good substrates for biosensors, catalysis and drug delive...
Nanoporous Gold (NPG) is a material of emerging interest for immobilization of biomolecules and esp...
The inexpensive, relatively fast and scalable production of nanostructured electrodes may benefit fu...
Nanoporous gold (NPG) has remarkable catalytic activity and biocompatibility and could potentially b...
Nanostructured surfaces have recently gained in importance for electrochemical applications because ...
The effect of electrode porosity on the electrochemical response of redox active molecules (potassiu...
peer-reviewedNanoporous gold (NPG) obtained via dealloying of Au alloys has potential applications i...
Fabrication of nanoporous electrodes for sensing applications By Md Rezaul Karim Khan, Ph.D. A diss...
The high surface areas of nanostructured electrodes can provide for significantly enhanced surface l...
The high surface areas of nanostructured electrodes can provide for significantly enhanced surface l...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
peer-reviewedRobust nanoporous gold electrodes were fabricated by sputtering a gold-silver alloy on...
The importance of porous materials has risen substantially in the last few decades due to their abil...
Nanoporous gold electrodes were fabricated with a novel method: Silver-epoxy was painted on gold sur...
This work describes the use of nanoporous gold as an electrode material for biosensing applications....
High surface area gold electrodes are very good substrates for biosensors, catalysis and drug delive...
Nanoporous Gold (NPG) is a material of emerging interest for immobilization of biomolecules and esp...
The inexpensive, relatively fast and scalable production of nanostructured electrodes may benefit fu...
Nanoporous gold (NPG) has remarkable catalytic activity and biocompatibility and could potentially b...
Nanostructured surfaces have recently gained in importance for electrochemical applications because ...
The effect of electrode porosity on the electrochemical response of redox active molecules (potassiu...
peer-reviewedNanoporous gold (NPG) obtained via dealloying of Au alloys has potential applications i...
Fabrication of nanoporous electrodes for sensing applications By Md Rezaul Karim Khan, Ph.D. A diss...