Electrospinning Method Used to Create Functional Nanocomposites Films

The most effective method of producing nanofibres is the technology of producing in the electrostatic field, which does not require the use of complicated procedures and equipment. Electrospinning allows to produce 1D nanostructures on an industrial scale in a relatively easy and quick way. The meth...

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Acceso en línea:ONIX_20231201_9781789235814_1196
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collection Directory of Open Access Books
description The most effective method of producing nanofibres is the technology of producing in the electrostatic field, which does not require the use of complicated procedures and equipment. Electrospinning allows to produce 1D nanostructures on an industrial scale in a relatively easy and quick way. The method of electrospinning shares the most features with classical technologies in obtaining synthetic fibres that enable forming and generating a stream of previously dissolved or melted polymer and its coaxial stretching, combined with the transition of the polymer from a liquid state to a solid state. In view of the large application possibilities of electrospun fibres, electrospinning is enjoying a dynamically growing interest of scientists, which can be proven by the increasing trend of scientific publications.
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publishDate 2023
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spelling doab-20.500.12854ir-1300872024-04-11T20:34:45Z Electrospinning Method Used to Create Functional Nanocomposites Films Tański, Tomasz Jarka, Pawel Matysiak, Wiktor drug delivery, catalysis, mathematical model, polarization, nanofiber, process parameters thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TG Mechanical engineering and materials::TGM Materials science The most effective method of producing nanofibres is the technology of producing in the electrostatic field, which does not require the use of complicated procedures and equipment. Electrospinning allows to produce 1D nanostructures on an industrial scale in a relatively easy and quick way. The method of electrospinning shares the most features with classical technologies in obtaining synthetic fibres that enable forming and generating a stream of previously dissolved or melted polymer and its coaxial stretching, combined with the transition of the polymer from a liquid state to a solid state. In view of the large application possibilities of electrospun fibres, electrospinning is enjoying a dynamically growing interest of scientists, which can be proven by the increasing trend of scientific publications. 2023-12-01T16:46:28Z 2023-12-01T16:46:28Z 2018 book ONIX_20231201_9781789235814_1196 9781789235814 9781789235807 9781838815073 https://directory.doabooks.org/handle/20.500.12854/130087 eng image/jpeg n/a https://www.intechopen.com/books/6501 https://mts.intechopen.com/storage/books/6501/authors_book/authors_book.pdf IntechOpen IntechOpen 10.5772/intechopen.70984 10.5772/intechopen.70984 78a36484-2c0c-47cb-ad67-2b9f5cd4a8f6 9781789235814 9781789235807 9781838815073 IntechOpen 158 open access
spellingShingle drug delivery, catalysis, mathematical model, polarization, nanofiber, process parameters
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TG Mechanical engineering and materials::TGM Materials science
Electrospinning Method Used to Create Functional Nanocomposites Films
title Electrospinning Method Used to Create Functional Nanocomposites Films
title_full Electrospinning Method Used to Create Functional Nanocomposites Films
title_fullStr Electrospinning Method Used to Create Functional Nanocomposites Films
title_full_unstemmed Electrospinning Method Used to Create Functional Nanocomposites Films
title_short Electrospinning Method Used to Create Functional Nanocomposites Films
title_sort electrospinning method used to create functional nanocomposites films
topic drug delivery, catalysis, mathematical model, polarization, nanofiber, process parameters
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TG Mechanical engineering and materials::TGM Materials science
topic_facet drug delivery, catalysis, mathematical model, polarization, nanofiber, process parameters
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TG Mechanical engineering and materials::TGM Materials science
url ONIX_20231201_9781789235814_1196