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Electrospinning chitosan blends for nonwovens with morphologies between nanofiber mat and membrane

N. Grimmelsmann, S.V. Homburg, A. Ehrmann, in:   Institute of Physics (Ed.), IOP Conference Series: Materials Science and Engineering, London, 2017.

Konferenzbeitrag | Englisch
herausgebende Körperschaft
Institute of Physics
Abstract
Chitosan belongs to the biopolymers possessing a broad spectrum of intrinsic physical and chemical properties which make it useful for diverse applications, such as filters or tissue engineering. For both areas it is necessary to control not only the chemical composition of the polymer, but also the shape of the surface which is in contact with the filtered medium or the growing cells, respectively. Depending on the desired form, chitosan and other biopolymers can be sprayed, coated, or spun, with few possibilities to vary their morphology between droplets, thin layers, and fibres. One possibility to mix thin films and fibres consists in using an electrospinning process which normally produces fine fibres, but depending on spinning solution and process, also membranes can be created. The article gives a short overview of the possibilities to vary a chitosan nonwoven between nanofiber mat and membrane, resulting in significantly different surface shapes.
Erscheinungsjahr
Titel des Konferenzbandes
IOP Conference Series: Materials Science and Engineering
Band
213
Artikelnummer
012007
Konferenz
Global Conference on Polymer and Composite Materials (PCM 2017)
Konferenzort
Guangzhou, China
Konferenzdatum
2017-05-23 – 2017-05-25
ISSN
eISSN
FH-PUB-ID
333

Zitieren

Grimmelsmann, Nils ; Homburg, Sarah Vanessa ; Ehrmann, Andrea: Electrospinning chitosan blends for nonwovens with morphologies between nanofiber mat and membrane. In:   Institute of Physics (Hrsg.): IOP Conference Series: Materials Science and Engineering, IOP Conference Series: Materials Science and Engineering. Bd. 213. London, 2017
Grimmelsmann N, Homburg SV, Ehrmann A. Electrospinning chitosan blends for nonwovens with morphologies between nanofiber mat and membrane. In:   Institute of Physics , ed. IOP Conference Series: Materials Science and Engineering. Vol 213. IOP Conference Series: Materials Science and Engineering. London; 2017. doi:10.1088/1757-899X/213/1/012007
Grimmelsmann, N., Homburg, S. V., & Ehrmann, A. (2017). Electrospinning chitosan blends for nonwovens with morphologies between nanofiber mat and membrane. In   Institute of Physics (Ed.), IOP Conference Series: Materials Science and Engineering (Vol. 213). London. https://doi.org/10.1088/1757-899X/213/1/012007
@inproceedings{Grimmelsmann_Homburg_Ehrmann_2017, place={London}, series={IOP Conference Series: Materials Science and Engineering}, title={Electrospinning chitosan blends for nonwovens with morphologies between nanofiber mat and membrane}, volume={213}, DOI={10.1088/1757-899X/213/1/012007}, number={012007}, booktitle={IOP Conference Series: Materials Science and Engineering}, author={Grimmelsmann, Nils and Homburg, Sarah Vanessa and Ehrmann, Andrea}, editor={  Institute of Physics Editor}, year={2017}, collection={IOP Conference Series: Materials Science and Engineering} }
Grimmelsmann, Nils, Sarah Vanessa Homburg, and Andrea Ehrmann. “Electrospinning Chitosan Blends for Nonwovens with Morphologies between Nanofiber Mat and Membrane.” In IOP Conference Series: Materials Science and Engineering, edited by   Institute of Physics , Vol. 213. IOP Conference Series: Materials Science and Engineering. London, 2017. https://doi.org/10.1088/1757-899X/213/1/012007.
N. Grimmelsmann, S. V. Homburg, and A. Ehrmann, “Electrospinning chitosan blends for nonwovens with morphologies between nanofiber mat and membrane,” in IOP Conference Series: Materials Science and Engineering, Guangzhou, China, 2017, vol. 213.
Grimmelsmann, Nils, et al. “Electrospinning Chitosan Blends for Nonwovens with Morphologies between Nanofiber Mat and Membrane.” IOP Conference Series: Materials Science and Engineering, edited by   Institute of Physics , vol. 213, 012007, 2017, doi:10.1088/1757-899X/213/1/012007.

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