For diagnostic and therapeutic purposes an accurate determination of multiple metabolites is often required. Amperometric devices are attractive tools to quantify biological compounds due to the direct conversion of a biochemical event to a current. This review addresses recent developments in the use of multiwalled carbon nanotubes to enhance detection ca- pability of amperometric array-based biosensors. More specifically, the principal techniques for multiwalled carbon nanotube incorporation onto microelectrode arrays are described. In these types of devices, each electrode is responsible for sensing one metabolite. The specificity is often given by an enzyme since most bio- molecules are not electroactive compounds. Common strategies for...
Carbon nanotubes (CNTs) have received considerable attention in the field of electrochemical sensing...
Electrochemical (EC) sensing approaches have exploited the use of carbon nanotubes (CNTs) as electro...
In this work thesis we aim at discussing electrochemical biosensors based on single-walled carbon na...
The monitoring of metabolic compounds such as glucose is largely reported in literature. The applica...
Carbon nanotubes (CNTs) improve the sensitivity of electrochemical biosensors. An optimized CNT/tras...
In this chapter we aim at reviewing the most relevant contributions in the development of electroche...
This review focuses on recent advances in the application of carbon nanotubes (CNTs) for the develop...
Carbon nanotubes have been attracting a lot of interest as electron transfer mediators to enhance el...
A nanotube electronic needle biosensor was developed to provide fast, low cost, accurate detection o...
Y-Aminopropyltriethoxysilane (APTES)-induced solubilization of multi-wall carbon nanotube CNTs allow...
The study of electrochemical behavior of bioactive molecules has become one of the most rapidly deve...
This work reports on a sensitive and selective genosensor fabrication method for Escherichia coli (E...
Biosensors are heterogenous devices, incorporating biological struc-tures combined with electronics,...
A carbon nanotube needle biosensor was developed to provide fast, cost effective and highly sensitiv...
Abstract — Nano-biosensing provides new tools to investigate cellular differentiation and proliferat...
Carbon nanotubes (CNTs) have received considerable attention in the field of electrochemical sensing...
Electrochemical (EC) sensing approaches have exploited the use of carbon nanotubes (CNTs) as electro...
In this work thesis we aim at discussing electrochemical biosensors based on single-walled carbon na...
The monitoring of metabolic compounds such as glucose is largely reported in literature. The applica...
Carbon nanotubes (CNTs) improve the sensitivity of electrochemical biosensors. An optimized CNT/tras...
In this chapter we aim at reviewing the most relevant contributions in the development of electroche...
This review focuses on recent advances in the application of carbon nanotubes (CNTs) for the develop...
Carbon nanotubes have been attracting a lot of interest as electron transfer mediators to enhance el...
A nanotube electronic needle biosensor was developed to provide fast, low cost, accurate detection o...
Y-Aminopropyltriethoxysilane (APTES)-induced solubilization of multi-wall carbon nanotube CNTs allow...
The study of electrochemical behavior of bioactive molecules has become one of the most rapidly deve...
This work reports on a sensitive and selective genosensor fabrication method for Escherichia coli (E...
Biosensors are heterogenous devices, incorporating biological struc-tures combined with electronics,...
A carbon nanotube needle biosensor was developed to provide fast, cost effective and highly sensitiv...
Abstract — Nano-biosensing provides new tools to investigate cellular differentiation and proliferat...
Carbon nanotubes (CNTs) have received considerable attention in the field of electrochemical sensing...
Electrochemical (EC) sensing approaches have exploited the use of carbon nanotubes (CNTs) as electro...
In this work thesis we aim at discussing electrochemical biosensors based on single-walled carbon na...