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Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport

[Image: see text] Stimuli-responsive nanochannels have attracted extensive attention in various fields owing to their precise regulation ability of ionic transportation. However, the poor controllability and functionality as well as responding to only one type of external stimulus still impede the d...

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Autores principales: Zhang, Xin, Xie, Lei, Zhou, Shan, Zeng, Hui, Zeng, Jie, Liu, Tianyi, Liang, Qirui, Yan, Miao, He, Yanjun, Liang, Kang, Zhang, Lei, Chen, Pu, Jiang, Lei, Kong, Biao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8949629/
https://www.ncbi.nlm.nih.gov/pubmed/35350602
http://dx.doi.org/10.1021/acscentsci.1c01402
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author Zhang, Xin
Xie, Lei
Zhou, Shan
Zeng, Hui
Zeng, Jie
Liu, Tianyi
Liang, Qirui
Yan, Miao
He, Yanjun
Liang, Kang
Zhang, Lei
Chen, Pu
Jiang, Lei
Kong, Biao
author_facet Zhang, Xin
Xie, Lei
Zhou, Shan
Zeng, Hui
Zeng, Jie
Liu, Tianyi
Liang, Qirui
Yan, Miao
He, Yanjun
Liang, Kang
Zhang, Lei
Chen, Pu
Jiang, Lei
Kong, Biao
author_sort Zhang, Xin
collection PubMed
description [Image: see text] Stimuli-responsive nanochannels have attracted extensive attention in various fields owing to their precise regulation ability of ionic transportation. However, the poor controllability and functionality as well as responding to only one type of external stimulus still impede the development of the smart nanochannels. Here, we demonstrate a novel heterogeneous membrane composed of ordered mesoporous titania nanopillar-arrays/anodic aluminum oxide (MTI/AAO) using an interfacial superassembly strategy, which can achieve intelligent light and pH multimodulation ion transport. The MTI/AAO membranes are generated through the self-assembly of templates, followed by interfacial superassembly of micelles on AAO, and then the nanostructure and phase transformation of titania. The presence of the MTI layer with anatase crystal endows the heterogeneous membrane with an excellent light-responsive current density of 219.2 μA·cm(–2), which is much higher than that of a reported traditional light-responsive nanofluidic device. Furthermore, the MTI/AAO heterogeneous membranes with an asymmetric structure exhibit excellent rectification performance. Moreover, pH-regulated surface charge polarity leads to a reversal of current rectification polarity. This light and pH multiresponsive membrane realizes efficient, sensitive, and stable ion regulation, extending the traditional nanochannel from single modulation to smart multimodulation.
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spelling pubmed-89496292022-03-28 Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport Zhang, Xin Xie, Lei Zhou, Shan Zeng, Hui Zeng, Jie Liu, Tianyi Liang, Qirui Yan, Miao He, Yanjun Liang, Kang Zhang, Lei Chen, Pu Jiang, Lei Kong, Biao ACS Cent Sci [Image: see text] Stimuli-responsive nanochannels have attracted extensive attention in various fields owing to their precise regulation ability of ionic transportation. However, the poor controllability and functionality as well as responding to only one type of external stimulus still impede the development of the smart nanochannels. Here, we demonstrate a novel heterogeneous membrane composed of ordered mesoporous titania nanopillar-arrays/anodic aluminum oxide (MTI/AAO) using an interfacial superassembly strategy, which can achieve intelligent light and pH multimodulation ion transport. The MTI/AAO membranes are generated through the self-assembly of templates, followed by interfacial superassembly of micelles on AAO, and then the nanostructure and phase transformation of titania. The presence of the MTI layer with anatase crystal endows the heterogeneous membrane with an excellent light-responsive current density of 219.2 μA·cm(–2), which is much higher than that of a reported traditional light-responsive nanofluidic device. Furthermore, the MTI/AAO heterogeneous membranes with an asymmetric structure exhibit excellent rectification performance. Moreover, pH-regulated surface charge polarity leads to a reversal of current rectification polarity. This light and pH multiresponsive membrane realizes efficient, sensitive, and stable ion regulation, extending the traditional nanochannel from single modulation to smart multimodulation. American Chemical Society 2022-02-14 2022-03-23 /pmc/articles/PMC8949629/ /pubmed/35350602 http://dx.doi.org/10.1021/acscentsci.1c01402 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Zhang, Xin
Xie, Lei
Zhou, Shan
Zeng, Hui
Zeng, Jie
Liu, Tianyi
Liang, Qirui
Yan, Miao
He, Yanjun
Liang, Kang
Zhang, Lei
Chen, Pu
Jiang, Lei
Kong, Biao
Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport
title Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport
title_full Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport
title_fullStr Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport
title_full_unstemmed Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport
title_short Interfacial Superassembly of Mesoporous Titania Nanopillar-Arrays/Alumina Oxide Heterochannels for Light- and pH-Responsive Smart Ion Transport
title_sort interfacial superassembly of mesoporous titania nanopillar-arrays/alumina oxide heterochannels for light- and ph-responsive smart ion transport
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8949629/
https://www.ncbi.nlm.nih.gov/pubmed/35350602
http://dx.doi.org/10.1021/acscentsci.1c01402
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