Nanofibers and nanotubes based on polymers offer a broad range of applications in areas such as photonics, sensorics, catalysis or medicine and pharmacy. A set of preparation techniques which allow to introduce simultaneous specific functions into such nanoobjects has been developed recently. These include electrospinning and co-electrospinning of nanofibers as well as template methods utilizing eletrospun nanofibers or porous substrates. These techniques yield infinitively long nanofibers and nanotubes with well defined aspect ratios respectively with diameters down to a few ten nanometers. These nanofibers and nanotubes can be functionalised, among others by using biodegradable materials or via the incorporation of nanoparticles or precur...
Electrospinning is a technology that has been widely used as a novel method for the generation of na...
The interest in the electrospinning process for the medicinal chemistry and nanotechnology field has...
Polymeric nanofibers are rapidly finding their place in nanomaterials technology. Electrospinning ma...
The use of electrospun nanofibres in applications such as medical products, fuel cells, photocatalys...
Nanofibres have wide applications in energy, environment and medical areas. This project examined ne...
In this study, three important subjects, electrospinning of nanofibrous materials suited for biomedi...
Polymer nanofibers, with diameters in the nanometer range, possess larger surface areas per unit mas...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Electrospinning of nanofibers with diameters that fall into nanometer range have attracted growing a...
Electrospinning provides a simple, rapid, and inexpensive way to produce nano/microscaled polymer fi...
Polymeric micro- and nanofibers featuring versatile functions with additional physical and chemical ...
Electrospinning has been considered a promising and novel procedure to fabricate polymer nanofibers ...
© 2017 Nova Science Publishers, Inc. Electrospinning is a simple and efficient process in producing ...
The subject of nanomedicine has seen a surge in research activity over the past decade, with nanofib...
Electrospun polymer nanofibers (EPNF) constitute one of the most important nanomaterials with divers...
Electrospinning is a technology that has been widely used as a novel method for the generation of na...
The interest in the electrospinning process for the medicinal chemistry and nanotechnology field has...
Polymeric nanofibers are rapidly finding their place in nanomaterials technology. Electrospinning ma...
The use of electrospun nanofibres in applications such as medical products, fuel cells, photocatalys...
Nanofibres have wide applications in energy, environment and medical areas. This project examined ne...
In this study, three important subjects, electrospinning of nanofibrous materials suited for biomedi...
Polymer nanofibers, with diameters in the nanometer range, possess larger surface areas per unit mas...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Electrospinning of nanofibers with diameters that fall into nanometer range have attracted growing a...
Electrospinning provides a simple, rapid, and inexpensive way to produce nano/microscaled polymer fi...
Polymeric micro- and nanofibers featuring versatile functions with additional physical and chemical ...
Electrospinning has been considered a promising and novel procedure to fabricate polymer nanofibers ...
© 2017 Nova Science Publishers, Inc. Electrospinning is a simple and efficient process in producing ...
The subject of nanomedicine has seen a surge in research activity over the past decade, with nanofib...
Electrospun polymer nanofibers (EPNF) constitute one of the most important nanomaterials with divers...
Electrospinning is a technology that has been widely used as a novel method for the generation of na...
The interest in the electrospinning process for the medicinal chemistry and nanotechnology field has...
Polymeric nanofibers are rapidly finding their place in nanomaterials technology. Electrospinning ma...