Nanoporous gold (NPG) has remarkable catalytic activity and biocompatibility and could potentially be used in biomedical devices. Herein, we have assessed the long term effects of biofouling on NPG interface. Nanoporoes (25 nm) in gold electrode are fabricated using a de-alloying treatment resulting in an 18 fold increase in surface area as compared to the planar gold. The effects of biofouling on the planar gold interface were evidenced by the rapid decrease in faradaic current to 55% in just eight minutes of incubation in 2 mg ml-1 of bovine serum albumin (BSA). On the other hand NPG showed barely any decline in the peak current when incubated in a similar biofouling solution. NPG upon incubation in a solution of higher concentration of B...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
peer-reviewedThe high surface areas of nanostructured electrodes can provide for significantly enhan...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (NPG) has remarkable catalytic activity and biocompatibility and could potentially b...
The effect of electrode porosity on the electrochemical response of redox active molecules (potassiu...
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...
The high surface areas of nanostructured electrodes can provide for significantly enhanced surface l...
The importance of porous materials has risen substantially in the last few decades due to their abil...
The importance of porous materials has risen substantially in the last few decades due to their abil...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
AbstractThis work describes the use of nanoporous gold as an electrode material for biosensing appli...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
peer-reviewedThe high surface areas of nanostructured electrodes can provide for significantly enhan...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (NPG) has remarkable catalytic activity and biocompatibility and could potentially b...
The effect of electrode porosity on the electrochemical response of redox active molecules (potassiu...
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...
The high surface areas of nanostructured electrodes can provide for significantly enhanced surface l...
The importance of porous materials has risen substantially in the last few decades due to their abil...
The importance of porous materials has risen substantially in the last few decades due to their abil...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
AbstractThis work describes the use of nanoporous gold as an electrode material for biosensing appli...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
peer-reviewedThe high surface areas of nanostructured electrodes can provide for significantly enhan...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...