Superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion

Nanotechnology can bring significant advancements to hemostatic patches. Here, the authors design a superhydrophobic hemostatic surface with immobilized carbon nanofibers that can stop bleeding instantaneously upon application, seal the wound subsequently by promoting quick fibrin formation, and fac...

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Autores principales: Zhe Li, Athanasios Milionis, Yu Zheng, Marcus Yee, Lukas Codispoti, Freddie Tan, Dimos Poulikakos, Choon Hwai Yap
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/484f297aaf234902ac3a7c1740df51ed
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spelling oai:doaj.org-article:484f297aaf234902ac3a7c1740df51ed2021-12-02T16:57:08ZSuperhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion10.1038/s41467-019-13512-82041-1723https://doaj.org/article/484f297aaf234902ac3a7c1740df51ed2019-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13512-8https://doaj.org/toc/2041-1723Nanotechnology can bring significant advancements to hemostatic patches. Here, the authors design a superhydrophobic hemostatic surface with immobilized carbon nanofibers that can stop bleeding instantaneously upon application, seal the wound subsequently by promoting quick fibrin formation, and facilitate unforced and facile patch removal without tearing the wound.Zhe LiAthanasios MilionisYu ZhengMarcus YeeLukas CodispotiFreddie TanDimos PoulikakosChoon Hwai YapNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhe Li
Athanasios Milionis
Yu Zheng
Marcus Yee
Lukas Codispoti
Freddie Tan
Dimos Poulikakos
Choon Hwai Yap
Superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion
description Nanotechnology can bring significant advancements to hemostatic patches. Here, the authors design a superhydrophobic hemostatic surface with immobilized carbon nanofibers that can stop bleeding instantaneously upon application, seal the wound subsequently by promoting quick fibrin formation, and facilitate unforced and facile patch removal without tearing the wound.
format article
author Zhe Li
Athanasios Milionis
Yu Zheng
Marcus Yee
Lukas Codispoti
Freddie Tan
Dimos Poulikakos
Choon Hwai Yap
author_facet Zhe Li
Athanasios Milionis
Yu Zheng
Marcus Yee
Lukas Codispoti
Freddie Tan
Dimos Poulikakos
Choon Hwai Yap
author_sort Zhe Li
title Superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion
title_short Superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion
title_full Superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion
title_fullStr Superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion
title_full_unstemmed Superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion
title_sort superhydrophobic hemostatic nanofiber composites for fast clotting and minimal adhesion
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/484f297aaf234902ac3a7c1740df51ed
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AT athanasiosmilionis superhydrophobichemostaticnanofibercompositesforfastclottingandminimaladhesion
AT yuzheng superhydrophobichemostaticnanofibercompositesforfastclottingandminimaladhesion
AT marcusyee superhydrophobichemostaticnanofibercompositesforfastclottingandminimaladhesion
AT lukascodispoti superhydrophobichemostaticnanofibercompositesforfastclottingandminimaladhesion
AT freddietan superhydrophobichemostaticnanofibercompositesforfastclottingandminimaladhesion
AT dimospoulikakos superhydrophobichemostaticnanofibercompositesforfastclottingandminimaladhesion
AT choonhwaiyap superhydrophobichemostaticnanofibercompositesforfastclottingandminimaladhesion
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