The accumulation of heavy metals in the human body and/or in the environment can be highly deleterious for mankind, and currently, considerable efforts have been made to develop reliable and sensitive techniques for their detection. Among the detection methods, chemical sensors appear as a promising technology, with emphasis on systems employing optically active nanofibers. Such nanofibers can be obtained by the electrospinning technique, and further functionalized with optically active chromophores such as dyes, conjugated polymers, carbon-based nanomaterials and nanoparticles, in order to produce fluorescent and colorimetric nanofibers. In this review we survey recent investigations reporting the use of optically active electrospun nanofi...
Sensors supplying a change in optical properties, easily detectable with the naked eye (visual) or i...
Novel multifunctional fluorescent chemosensors composed of electrospun (ES) nanofibers with high sen...
An electrospun nanofibrous explosive sensor was first constructed based on a newly developed fluores...
The accumulation of heavy metals in the human body and/or in the environment can be highly deleterio...
Sensors and biosensors have found applications in many areas, e.g., in medicine and clinical diagnos...
The thesis presents the development of polymer based electrospun nanofibers as diagnostic probes for...
In light of growing concern over environmental, safety, and health issues, our modern world exhibits...
Contamination by heavy metals is currently one of the most environmental concerns especially due to ...
In this work, the first use of electrospun nanofibrous materials as highly responsive fluorescence q...
Novel multifunctional switchable chemosensors based on fluorescent electrospun (ES) nanofibers with ...
Electrospun nanomaterials and their applications have increasingly gained interest over the last dec...
The first use of electrospun nanofibrous membranes as highly responsive fluorescence quenching-based...
In this work, the use of electrospun nanofibrous materials as highly responsive fluorescence quenchi...
A new method for fabricating fluorescent nanofibers as sensing materials was developed via the elect...
Electrospinning (ES) is a technologically mature approach for the fabrication and production of poly...
Sensors supplying a change in optical properties, easily detectable with the naked eye (visual) or i...
Novel multifunctional fluorescent chemosensors composed of electrospun (ES) nanofibers with high sen...
An electrospun nanofibrous explosive sensor was first constructed based on a newly developed fluores...
The accumulation of heavy metals in the human body and/or in the environment can be highly deleterio...
Sensors and biosensors have found applications in many areas, e.g., in medicine and clinical diagnos...
The thesis presents the development of polymer based electrospun nanofibers as diagnostic probes for...
In light of growing concern over environmental, safety, and health issues, our modern world exhibits...
Contamination by heavy metals is currently one of the most environmental concerns especially due to ...
In this work, the first use of electrospun nanofibrous materials as highly responsive fluorescence q...
Novel multifunctional switchable chemosensors based on fluorescent electrospun (ES) nanofibers with ...
Electrospun nanomaterials and their applications have increasingly gained interest over the last dec...
The first use of electrospun nanofibrous membranes as highly responsive fluorescence quenching-based...
In this work, the use of electrospun nanofibrous materials as highly responsive fluorescence quenchi...
A new method for fabricating fluorescent nanofibers as sensing materials was developed via the elect...
Electrospinning (ES) is a technologically mature approach for the fabrication and production of poly...
Sensors supplying a change in optical properties, easily detectable with the naked eye (visual) or i...
Novel multifunctional fluorescent chemosensors composed of electrospun (ES) nanofibers with high sen...
An electrospun nanofibrous explosive sensor was first constructed based on a newly developed fluores...