Underwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics

Water can function as a sustainable reactor for the synthesis of size-controlled, functional nanoparticles. Here, the authors introduce an underwater Leidenfrost synthesis that reproduces the dynamic chemistry of the deep ocean, in which anticancer therapeutic ZnO2nanoclusters form in an overheated...

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Autores principales: Mady Elbahri, Ramzy Abdelaziz, Duygu Disci-Zayed, Shahin Homaeigohar, Justyna Sosna, Dieter Adam, Lorenz Kienle, Torben Dankwort, Moheb Abdelaziz
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/fe020df06a0343b0bde5b6a479c8304c
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spelling oai:doaj.org-article:fe020df06a0343b0bde5b6a479c8304c2021-12-02T17:01:18ZUnderwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics10.1038/ncomms153192041-1723https://doaj.org/article/fe020df06a0343b0bde5b6a479c8304c2017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15319https://doaj.org/toc/2041-1723Water can function as a sustainable reactor for the synthesis of size-controlled, functional nanoparticles. Here, the authors introduce an underwater Leidenfrost synthesis that reproduces the dynamic chemistry of the deep ocean, in which anticancer therapeutic ZnO2nanoclusters form in an overheated zone and migrate to colder water to continue growth.Mady ElbahriRamzy AbdelazizDuygu Disci-ZayedShahin HomaeigoharJustyna SosnaDieter AdamLorenz KienleTorben DankwortMoheb AbdelazizNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mady Elbahri
Ramzy Abdelaziz
Duygu Disci-Zayed
Shahin Homaeigohar
Justyna Sosna
Dieter Adam
Lorenz Kienle
Torben Dankwort
Moheb Abdelaziz
Underwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics
description Water can function as a sustainable reactor for the synthesis of size-controlled, functional nanoparticles. Here, the authors introduce an underwater Leidenfrost synthesis that reproduces the dynamic chemistry of the deep ocean, in which anticancer therapeutic ZnO2nanoclusters form in an overheated zone and migrate to colder water to continue growth.
format article
author Mady Elbahri
Ramzy Abdelaziz
Duygu Disci-Zayed
Shahin Homaeigohar
Justyna Sosna
Dieter Adam
Lorenz Kienle
Torben Dankwort
Moheb Abdelaziz
author_facet Mady Elbahri
Ramzy Abdelaziz
Duygu Disci-Zayed
Shahin Homaeigohar
Justyna Sosna
Dieter Adam
Lorenz Kienle
Torben Dankwort
Moheb Abdelaziz
author_sort Mady Elbahri
title Underwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics
title_short Underwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics
title_full Underwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics
title_fullStr Underwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics
title_full_unstemmed Underwater Leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics
title_sort underwater leidenfrost nanochemistry for creation of size-tailored zinc peroxide cancer nanotherapeutics
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/fe020df06a0343b0bde5b6a479c8304c
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AT ramzyabdelaziz underwaterleidenfrostnanochemistryforcreationofsizetailoredzincperoxidecancernanotherapeutics
AT duygudiscizayed underwaterleidenfrostnanochemistryforcreationofsizetailoredzincperoxidecancernanotherapeutics
AT shahinhomaeigohar underwaterleidenfrostnanochemistryforcreationofsizetailoredzincperoxidecancernanotherapeutics
AT justynasosna underwaterleidenfrostnanochemistryforcreationofsizetailoredzincperoxidecancernanotherapeutics
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AT torbendankwort underwaterleidenfrostnanochemistryforcreationofsizetailoredzincperoxidecancernanotherapeutics
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