Sanket Kadam Blog

The Innovation That Is Going to Stay For Long: Nanofibers

nanofiber
nanofiber | Image Resource : nano109.com
 
Prior to viewing the article, one has to have an idea what a nanofiber means. This can be defined as the materials which are produced from organic and inorganic polymers by the use of technology of electrospinning which have been manufactured of 50 to 500 nanometers and have garnered quite an interest amidst researchers and publishers due its wide variety of applicability especially in the field of civil engineering.

Following an elongated study and research, a synopsis has been drawn out relative to electrospun polymer nanofibers which revolves around various physical and structural traits of it. Electrospun Polymer nanofibers are being taken into consideration for research activities to enhance functionality and its development in the near future.

The recent advancements in Nanofibers

The nanofiber has found itself in the news for its recent innovations and a wide range of applications in a variety of spheres. Neddleless electrospinning, hybrid yarns, construction of bicomponent nanofibers and nanowebs, cross-linkage of the particles are some on the list. It can also be made out of inorganic substances by the usage of several technologically advanced techniques.

Polymer Nanofiber technology has found itself as the center of research attraction for its air permeability, ability to diffuse of moisture through the pores of the matter, its ability to combat the wear and tear and water resistance, high water vapour transmission rate, the distinct length and diameter proportion.

This Polymer nanofibers technology has found its use in a variety of applications such as medicine, implant material and tissue engineering. Researchers have successfully researched and derived nanofiber meshes to be used to combat HIV. It can also be used in contraception. To face the bizarre harmful chemicals, napkins with nanofiber antibodies has also been designed. The fields who are extensively adopting the methodology are textile industry, bioelectronics, nanocomposites and health. It is also used in storage devices.
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