Nanotechnology provides innovative approaches and prospects for maintaining renewable resources and future ecosystems. Nanofibrous morphological materials are desirable in solving various energy and environmental problems. Electrospinning can effectively generate nanofibers, which is a simple and inexpensive technique. Three-dimensional (3D), highly compressible and robust aerogels derived from 1D electrospun polymer nanofibers will have wide technical implications for areas ranging from bioengineering, electrical devices and energy storage; however, aerogels derived from these electrospun polymer nanofibers have proved too challenging to develop. In this review, new strategies for the development of 3D structured aerogels with a hierarchic...
Nanofiber production by electrospinning has made great progress within the past two decades. Yet, re...
A straightforward, cheap and unique method to produce novel fibers with a diameter in the range of 1...
Electrospinning has shown great potential in tissue engineering and regenerative medicine due to a h...
A new class of aerogels based on advanced 1D nanofibers have emerged recently. What makes this class...
Electrospinning is a simple, versatile, cost-effective, and scalable technique for the growth of hig...
Electrospun nanofibers have been exploited in multidisciplinary fields with numerous applications fo...
As the demand for energy is rapidly growing worldwide ahead of energy supply, there is an impulse ne...
With global concerns about the shortage of fossil fuels and environmental issues, the development of...
Long-length nanofibers are able to form porous networks with high surface-area-to-volume ratios, and...
Nanofiber production by electrospinning has made great progress over the past two decades. Recently ...
Department of Materials Science EngineeringThe electrospinning is facile method to fabricate nanofib...
As the population gets older, the demands for new medical treatments increase since many of our most...
Three-dimensional (3D) carbonaceous aerogels assembled by one-dimensional (1D) carbon nanofibers (CN...
© 2017 Nova Science Publishers, Inc. Electrospinning is a simple and efficient process in producing ...
Many applications proposed for functional nanofibers require their assembly into a monolithic cellul...
Nanofiber production by electrospinning has made great progress within the past two decades. Yet, re...
A straightforward, cheap and unique method to produce novel fibers with a diameter in the range of 1...
Electrospinning has shown great potential in tissue engineering and regenerative medicine due to a h...
A new class of aerogels based on advanced 1D nanofibers have emerged recently. What makes this class...
Electrospinning is a simple, versatile, cost-effective, and scalable technique for the growth of hig...
Electrospun nanofibers have been exploited in multidisciplinary fields with numerous applications fo...
As the demand for energy is rapidly growing worldwide ahead of energy supply, there is an impulse ne...
With global concerns about the shortage of fossil fuels and environmental issues, the development of...
Long-length nanofibers are able to form porous networks with high surface-area-to-volume ratios, and...
Nanofiber production by electrospinning has made great progress over the past two decades. Recently ...
Department of Materials Science EngineeringThe electrospinning is facile method to fabricate nanofib...
As the population gets older, the demands for new medical treatments increase since many of our most...
Three-dimensional (3D) carbonaceous aerogels assembled by one-dimensional (1D) carbon nanofibers (CN...
© 2017 Nova Science Publishers, Inc. Electrospinning is a simple and efficient process in producing ...
Many applications proposed for functional nanofibers require their assembly into a monolithic cellul...
Nanofiber production by electrospinning has made great progress within the past two decades. Yet, re...
A straightforward, cheap and unique method to produce novel fibers with a diameter in the range of 1...
Electrospinning has shown great potential in tissue engineering and regenerative medicine due to a h...