Halloysite Nanotubes: Controlled Access and Release by Smart Gates

Hollow halloysite nanotubes have been used as nanocontainers for loading and for the triggered release of calcium hydroxide for paper preservation. A strategy for placing end-stoppers into the tubular nanocontainer is proposed and the sustained release from the cavity is reported. The incorporation...

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Main Authors: Giuseppe Cavallaro, Anna A. Danilushkina, Vladimir G. Evtugyn, Giuseppe Lazzara, Stefana Milioto, Filippo Parisi, Elvira V. Rozhina, Rawil F. Fakhrullin
Format: Article
Language:English
Published: MDPI AG 2017-07-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/7/8/199
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spelling doaj-66d9498316ce46c2af794512a3a1aa012020-11-24T23:12:21ZengMDPI AGNanomaterials2079-49912017-07-017819910.3390/nano7080199nano7080199Halloysite Nanotubes: Controlled Access and Release by Smart GatesGiuseppe Cavallaro0Anna A. Danilushkina1Vladimir G. Evtugyn2Giuseppe Lazzara3Stefana Milioto4Filippo Parisi5Elvira V. Rozhina6Rawil F. Fakhrullin7Dipartimento di Fisica e Chimica, Università degli Studi di Palermo Viale delle Scienze, pad. 17, 90128 Palermo, ItalyInstitute of Fundamental Medicine and Biology, Kazan Federal University, Kreml uramı 18, Kazan, 420008 Republic of Tatarstan, RussiaInstitute of Fundamental Medicine and Biology, Kazan Federal University, Kreml uramı 18, Kazan, 420008 Republic of Tatarstan, RussiaDipartimento di Fisica e Chimica, Università degli Studi di Palermo Viale delle Scienze, pad. 17, 90128 Palermo, ItalyDipartimento di Fisica e Chimica, Università degli Studi di Palermo Viale delle Scienze, pad. 17, 90128 Palermo, ItalyDipartimento di Fisica e Chimica, Università degli Studi di Palermo Viale delle Scienze, pad. 17, 90128 Palermo, ItalyInstitute of Fundamental Medicine and Biology, Kazan Federal University, Kreml uramı 18, Kazan, 420008 Republic of Tatarstan, RussiaInstitute of Fundamental Medicine and Biology, Kazan Federal University, Kreml uramı 18, Kazan, 420008 Republic of Tatarstan, RussiaHollow halloysite nanotubes have been used as nanocontainers for loading and for the triggered release of calcium hydroxide for paper preservation. A strategy for placing end-stoppers into the tubular nanocontainer is proposed and the sustained release from the cavity is reported. The incorporation of Ca(OH)2 into the nanotube lumen, as demonstrated using transmission electron microscopy (TEM) imaging and Energy Dispersive X-ray (EDX) mapping, retards the carbonatation, delaying the reaction with CO2 gas. This effect can be further controlled by placing the end-stoppers. The obtained material is tested for paper deacidification. We prove that adding halloysite filled with Ca(OH)2 to paper can reduce the impact of acid exposure on both the mechanical performance and pH alteration. The end-stoppers have a double effect: they preserve the calcium hydroxide from carbonation, and they prevent from the formation of highly basic pH and trigger the response to acid exposure minimizing the pH drop-down. These features are promising for a composite nanoadditive in the smart protection of cellulose-based materials.https://www.mdpi.com/2079-4991/7/8/199halloysitenanocompositecellulosecontrolled release
collection DOAJ
language English
format Article
sources DOAJ
author Giuseppe Cavallaro
Anna A. Danilushkina
Vladimir G. Evtugyn
Giuseppe Lazzara
Stefana Milioto
Filippo Parisi
Elvira V. Rozhina
Rawil F. Fakhrullin
spellingShingle Giuseppe Cavallaro
Anna A. Danilushkina
Vladimir G. Evtugyn
Giuseppe Lazzara
Stefana Milioto
Filippo Parisi
Elvira V. Rozhina
Rawil F. Fakhrullin
Halloysite Nanotubes: Controlled Access and Release by Smart Gates
Nanomaterials
halloysite
nanocomposite
cellulose
controlled release
author_facet Giuseppe Cavallaro
Anna A. Danilushkina
Vladimir G. Evtugyn
Giuseppe Lazzara
Stefana Milioto
Filippo Parisi
Elvira V. Rozhina
Rawil F. Fakhrullin
author_sort Giuseppe Cavallaro
title Halloysite Nanotubes: Controlled Access and Release by Smart Gates
title_short Halloysite Nanotubes: Controlled Access and Release by Smart Gates
title_full Halloysite Nanotubes: Controlled Access and Release by Smart Gates
title_fullStr Halloysite Nanotubes: Controlled Access and Release by Smart Gates
title_full_unstemmed Halloysite Nanotubes: Controlled Access and Release by Smart Gates
title_sort halloysite nanotubes: controlled access and release by smart gates
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2017-07-01
description Hollow halloysite nanotubes have been used as nanocontainers for loading and for the triggered release of calcium hydroxide for paper preservation. A strategy for placing end-stoppers into the tubular nanocontainer is proposed and the sustained release from the cavity is reported. The incorporation of Ca(OH)2 into the nanotube lumen, as demonstrated using transmission electron microscopy (TEM) imaging and Energy Dispersive X-ray (EDX) mapping, retards the carbonatation, delaying the reaction with CO2 gas. This effect can be further controlled by placing the end-stoppers. The obtained material is tested for paper deacidification. We prove that adding halloysite filled with Ca(OH)2 to paper can reduce the impact of acid exposure on both the mechanical performance and pH alteration. The end-stoppers have a double effect: they preserve the calcium hydroxide from carbonation, and they prevent from the formation of highly basic pH and trigger the response to acid exposure minimizing the pH drop-down. These features are promising for a composite nanoadditive in the smart protection of cellulose-based materials.
topic halloysite
nanocomposite
cellulose
controlled release
url https://www.mdpi.com/2079-4991/7/8/199
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