Nanoscale biosensors, owing to their high-sensitivity and extremely low limits-of-detection, have enabled the realization of highly complex and sophisticated miniaturized platforms for several important healthcare applications, the most predominant one being disease diagnosis. In particular, nanomaterial facilitated electrochemical detection of DNA hybridization has had an exceptional impact on fields such as genetics and cancerous mutation detection Here we report an ultrasensitive electrochemical platform using electrospun semi-conducting Manganese (III) Oxide (Mn2O3) nanofibers for DNA Hybridization detection. The proposed platform coalesces the inherent advantages of metal-oxide nanofibers and electrochemical transduction techniques, re...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
WOS: 000252202100005PubMed ID: 18371645DNA sensing strategies have recently been varieted with the n...
A sensitive membrane-based electrochemical nanobiosensor is developed for the detection of dengue ty...
Nanoscale biosensors, owing to their high-sensitivity and extremely low limits-of-detection, have en...
In this work, we report the synthesis and electrical characterization of electrospun manganese III o...
Chemiresistive platforms are best suited for developing DNA hybridization detection systems, owing t...
A label and indicator free electrochemical DNA hybridization detection method based on a manganese(i...
WOS: 000341779000012A label and indicator free electrochemical DNA hybridization detection method ba...
WOS: 000264089600025Metal oxide nanostructures offer interesting possibilities to design functional ...
In recent times, nanoscale one-dimensional conductors such as nanotubes have been extensively used a...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
International audienceIn the present work, zinc oxide (ZnO) nanowire (NWs)/graphite microfiber hybri...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
WOS: 000252202100005PubMed ID: 18371645DNA sensing strategies have recently been varieted with the n...
A sensitive membrane-based electrochemical nanobiosensor is developed for the detection of dengue ty...
Nanoscale biosensors, owing to their high-sensitivity and extremely low limits-of-detection, have en...
In this work, we report the synthesis and electrical characterization of electrospun manganese III o...
Chemiresistive platforms are best suited for developing DNA hybridization detection systems, owing t...
A label and indicator free electrochemical DNA hybridization detection method based on a manganese(i...
WOS: 000341779000012A label and indicator free electrochemical DNA hybridization detection method ba...
WOS: 000264089600025Metal oxide nanostructures offer interesting possibilities to design functional ...
In recent times, nanoscale one-dimensional conductors such as nanotubes have been extensively used a...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
International audienceIn the present work, zinc oxide (ZnO) nanowire (NWs)/graphite microfiber hybri...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
The highly porous Mn2O3-Ag nanofibers were fabricated by a facile two-step procedure (electrospinnin...
WOS: 000252202100005PubMed ID: 18371645DNA sensing strategies have recently been varieted with the n...
A sensitive membrane-based electrochemical nanobiosensor is developed for the detection of dengue ty...