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MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties

The development of smart hydrogel with excellent mechanical properties and photothermal conversion capability is helpful in expending its application fields. Herein, a MXene/gelatin/polyacrylamide (M/G/PAM) nanocomposite double network (NDN) hydrogel was synthesized by γ-ray radiation technology for...

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Detalles Bibliográficos
Autores principales: Zhang, Zeyu, Hu, Yang, Ma, Huiling, Wang, Yicheng, Zhong, Shouchao, Sheng, Lang, Li, Xiang, Peng, Jing, Li, Jiuqiang, Zhai, Maolin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739737/
https://www.ncbi.nlm.nih.gov/pubmed/36501639
http://dx.doi.org/10.3390/polym14235247
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author Zhang, Zeyu
Hu, Yang
Ma, Huiling
Wang, Yicheng
Zhong, Shouchao
Sheng, Lang
Li, Xiang
Peng, Jing
Li, Jiuqiang
Zhai, Maolin
author_facet Zhang, Zeyu
Hu, Yang
Ma, Huiling
Wang, Yicheng
Zhong, Shouchao
Sheng, Lang
Li, Xiang
Peng, Jing
Li, Jiuqiang
Zhai, Maolin
author_sort Zhang, Zeyu
collection PubMed
description The development of smart hydrogel with excellent mechanical properties and photothermal conversion capability is helpful in expending its application fields. Herein, a MXene/gelatin/polyacrylamide (M/G/PAM) nanocomposite double network (NDN) hydrogel was synthesized by γ-ray radiation technology for the first time. Compared with gelatin/polyacrylamide double network hydrogel, the optimized resultant M(3)/G/PAM NDN hydrogel shows better mechanical properties (tensile strength of 634 ± 10 kPa, compressive strength of 3.44 ± 0.12 MPa at a compression ratio of 90%). The M(3)/G/PAM NDN hydrogel exhibits a faster heating rate of 30 °C min(−1), stable photothermal ability, and mechanical properties even after 20 cycles of on–off 808 nm near-infrared (NIR) laser irradiation (1.0 W cm(−2)). Furthermore, the temperature of M(3)/G/PAM NDN hydrogel can be increased rapidly from 25 °C to 90 °C in 10 s and could reach 145 °C in 120 s under irradiation by focused NIR laser irradiation (56.6 W cm(−2)). The high mechanical property and photothermal properties of M/G/PAM hydrogel are ascribed to the formation of double network and uniform hydrogen bonding between MXene and gelatin and PAM polymers. This work paves the way for construction of photothermal hydrogels with excellent mechanical properties.
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spelling pubmed-97397372022-12-11 MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties Zhang, Zeyu Hu, Yang Ma, Huiling Wang, Yicheng Zhong, Shouchao Sheng, Lang Li, Xiang Peng, Jing Li, Jiuqiang Zhai, Maolin Polymers (Basel) Article The development of smart hydrogel with excellent mechanical properties and photothermal conversion capability is helpful in expending its application fields. Herein, a MXene/gelatin/polyacrylamide (M/G/PAM) nanocomposite double network (NDN) hydrogel was synthesized by γ-ray radiation technology for the first time. Compared with gelatin/polyacrylamide double network hydrogel, the optimized resultant M(3)/G/PAM NDN hydrogel shows better mechanical properties (tensile strength of 634 ± 10 kPa, compressive strength of 3.44 ± 0.12 MPa at a compression ratio of 90%). The M(3)/G/PAM NDN hydrogel exhibits a faster heating rate of 30 °C min(−1), stable photothermal ability, and mechanical properties even after 20 cycles of on–off 808 nm near-infrared (NIR) laser irradiation (1.0 W cm(−2)). Furthermore, the temperature of M(3)/G/PAM NDN hydrogel can be increased rapidly from 25 °C to 90 °C in 10 s and could reach 145 °C in 120 s under irradiation by focused NIR laser irradiation (56.6 W cm(−2)). The high mechanical property and photothermal properties of M/G/PAM hydrogel are ascribed to the formation of double network and uniform hydrogen bonding between MXene and gelatin and PAM polymers. This work paves the way for construction of photothermal hydrogels with excellent mechanical properties. MDPI 2022-12-01 /pmc/articles/PMC9739737/ /pubmed/36501639 http://dx.doi.org/10.3390/polym14235247 Text en © 2022 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
Zhang, Zeyu
Hu, Yang
Ma, Huiling
Wang, Yicheng
Zhong, Shouchao
Sheng, Lang
Li, Xiang
Peng, Jing
Li, Jiuqiang
Zhai, Maolin
MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties
title MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties
title_full MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties
title_fullStr MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties
title_full_unstemmed MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties
title_short MXene/Gelatin/Polyacrylamide Nanocomposite Double Network Hydrogel with Improved Mechanical and Photothermal Properties
title_sort mxene/gelatin/polyacrylamide nanocomposite double network hydrogel with improved mechanical and photothermal properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739737/
https://www.ncbi.nlm.nih.gov/pubmed/36501639
http://dx.doi.org/10.3390/polym14235247
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