AbstractElectrospinnng is one of the most conventional methods for producing nano fibers in different forms, such as core-shell hollow and porous nanofibers. These forms open new windows on innovative applications for nanofibers like ultra filtration, fuel cells, membranes, tissue engineering, catalysis and drug delivery or release and nanofluidics and hydrogen storage. In the presented paper, developments in the electrospinning method toward fabrication of core-shell, and hollow and porous nanofibers are presented. Different spinnerets like coaxial and side by side are considered. Furthermore, experienced methods for producing these novel fibers, such as Nonsolvent-Induced Phase Separation (NIPS) and phase separation, are described. It is ...
Spinning is a prehistoric technology in which endless filaments, shorter fibers or twisted fibers ar...
The use of electrospun nanofibres in applications such as medical products, fuel cells, photocatalys...
In this work, we report on the development of slit-surface electrospinning--a process that co-locali...
AbstractElectrospinnng is one of the most conventional methods for producing nano fibers in differen...
A simple and efficient method to induce porosity both in the core and on the surface of electrospun ...
Abstract In this article, we describe a microfluidic ap-proach to fabricate hollow and core/sheath n...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Nanofibers have a wide range of applications, including filtration and biomedical engineering. Porou...
Electrospinning is a useful and convenient method for producing ultrathin fibers. It has grabbed the...
Nanofibres have wide applications in energy, environment and medical areas. This project examined ne...
Complex nanostructured materials have great potential for applications in many areas of nanotechnolo...
Electrospinning emerges as a simple, cost-effective, and highly versatile method used for mass fabri...
Nanotechnology is the study and development of materials at nano levels. It is one of the rapidly gr...
Electrospinning is a simple, but efficient and versatile, technology to produce polymeric nanofibers...
Electrospinning is a process of creating solid continuous fibers of material with diameter in the mi...
Spinning is a prehistoric technology in which endless filaments, shorter fibers or twisted fibers ar...
The use of electrospun nanofibres in applications such as medical products, fuel cells, photocatalys...
In this work, we report on the development of slit-surface electrospinning--a process that co-locali...
AbstractElectrospinnng is one of the most conventional methods for producing nano fibers in differen...
A simple and efficient method to induce porosity both in the core and on the surface of electrospun ...
Abstract In this article, we describe a microfluidic ap-proach to fabricate hollow and core/sheath n...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Nanofibers have a wide range of applications, including filtration and biomedical engineering. Porou...
Electrospinning is a useful and convenient method for producing ultrathin fibers. It has grabbed the...
Nanofibres have wide applications in energy, environment and medical areas. This project examined ne...
Complex nanostructured materials have great potential for applications in many areas of nanotechnolo...
Electrospinning emerges as a simple, cost-effective, and highly versatile method used for mass fabri...
Nanotechnology is the study and development of materials at nano levels. It is one of the rapidly gr...
Electrospinning is a simple, but efficient and versatile, technology to produce polymeric nanofibers...
Electrospinning is a process of creating solid continuous fibers of material with diameter in the mi...
Spinning is a prehistoric technology in which endless filaments, shorter fibers or twisted fibers ar...
The use of electrospun nanofibres in applications such as medical products, fuel cells, photocatalys...
In this work, we report on the development of slit-surface electrospinning--a process that co-locali...