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Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution

Intelligentization of materials and structures is an important trend. Herein, the stimuli-responsive 4D aerogel is used as a smart substrate for rapid reduction in tetracycline (TC) pollution, in which this smart stimuli-responsive substrate is designated as P4D. Its fourth dimension originates from...

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Autores principales: Wang, Wenxin, Wang, Wenjing, Liang, Ying, Du, Liwen, Yang, Huan, Ma, Haoxiang, Cheng, Huiting, Yan, Yaqian, Shen, Yijun, Chen, Qi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386521/
https://www.ncbi.nlm.nih.gov/pubmed/37513377
http://dx.doi.org/10.3390/molecules28145505
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author Wang, Wenxin
Wang, Wenjing
Liang, Ying
Du, Liwen
Yang, Huan
Ma, Haoxiang
Cheng, Huiting
Yan, Yaqian
Shen, Yijun
Chen, Qi
author_facet Wang, Wenxin
Wang, Wenjing
Liang, Ying
Du, Liwen
Yang, Huan
Ma, Haoxiang
Cheng, Huiting
Yan, Yaqian
Shen, Yijun
Chen, Qi
author_sort Wang, Wenxin
collection PubMed
description Intelligentization of materials and structures is an important trend. Herein, the stimuli-responsive 4D aerogel is used as a smart substrate for rapid reduction in tetracycline (TC) pollution, in which this smart stimuli-responsive substrate is designated as P4D. Its fourth dimension originates from stimuli-responsive characteristics with time evolution. Meanwhile, the covalent organic frameworks (COFs) composite is constructed by BiPO(4) and triazine-based sp(2) carbon-conjugated g-C(18)N(3)-COF (COF-1), which is another key aspect of COF-1/BiPO(4)@P4D for rapid photocatalytic degradation regarding TC pollution. This emerging smart structure of COFs@P4D can fix programmable temporary state and recover permanent state under thermal or water stimulus without any complicated equipment. Its performance can be tailored by structure, composition, and function. Compared with traditional powder-form photocatalysts, this stimuli-responsive structure provides attractive advantages, such as high permeable framework, self-adaptivity, flexibly customized functional groups, and fast reduction in TC pollution. The predictable development of COFs@P4D could draw much attention for various promising applications in pollution treatment and sensors.
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spelling pubmed-103865212023-07-30 Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution Wang, Wenxin Wang, Wenjing Liang, Ying Du, Liwen Yang, Huan Ma, Haoxiang Cheng, Huiting Yan, Yaqian Shen, Yijun Chen, Qi Molecules Article Intelligentization of materials and structures is an important trend. Herein, the stimuli-responsive 4D aerogel is used as a smart substrate for rapid reduction in tetracycline (TC) pollution, in which this smart stimuli-responsive substrate is designated as P4D. Its fourth dimension originates from stimuli-responsive characteristics with time evolution. Meanwhile, the covalent organic frameworks (COFs) composite is constructed by BiPO(4) and triazine-based sp(2) carbon-conjugated g-C(18)N(3)-COF (COF-1), which is another key aspect of COF-1/BiPO(4)@P4D for rapid photocatalytic degradation regarding TC pollution. This emerging smart structure of COFs@P4D can fix programmable temporary state and recover permanent state under thermal or water stimulus without any complicated equipment. Its performance can be tailored by structure, composition, and function. Compared with traditional powder-form photocatalysts, this stimuli-responsive structure provides attractive advantages, such as high permeable framework, self-adaptivity, flexibly customized functional groups, and fast reduction in TC pollution. The predictable development of COFs@P4D could draw much attention for various promising applications in pollution treatment and sensors. MDPI 2023-07-19 /pmc/articles/PMC10386521/ /pubmed/37513377 http://dx.doi.org/10.3390/molecules28145505 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Wenxin
Wang, Wenjing
Liang, Ying
Du, Liwen
Yang, Huan
Ma, Haoxiang
Cheng, Huiting
Yan, Yaqian
Shen, Yijun
Chen, Qi
Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution
title Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution
title_full Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution
title_fullStr Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution
title_full_unstemmed Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution
title_short Advanced Stimuli-Responsive Structure Based on 4D Aerogel and Covalent Organic Frameworks Composite for Rapid Reduction in Tetracycline Pollution
title_sort advanced stimuli-responsive structure based on 4d aerogel and covalent organic frameworks composite for rapid reduction in tetracycline pollution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386521/
https://www.ncbi.nlm.nih.gov/pubmed/37513377
http://dx.doi.org/10.3390/molecules28145505
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