Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier

Silica aerogels have attracted much attention owing to their excellent thermal insulation properties. However, the conventional synthesis of silica aerogels involves the use of expensive and toxic alkoxide precursors and surface modifiers such as trimethylchlorosilane. In this study, cost-effective...

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Main Authors: Hyeonjung Kim, Kangyong Kim, Hyunhong Kim, Doo Jin Lee, Jongnam Park
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/10/12/2406
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spelling doaj-7ec56f813d424bbe91aab68126f6cf172020-12-02T00:02:56ZengMDPI AGNanomaterials2079-49912020-12-01102406240610.3390/nano10122406Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based ModifierHyeonjung Kim0Kangyong Kim1Hyunhong Kim2Doo Jin Lee3Jongnam Park4School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, KoreaSchool of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, KoreaSchool of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, KoreaDPG Project and Chemical Business Planning Team, SKC, Seoul 03142, KoreaSchool of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, KoreaSilica aerogels have attracted much attention owing to their excellent thermal insulation properties. However, the conventional synthesis of silica aerogels involves the use of expensive and toxic alkoxide precursors and surface modifiers such as trimethylchlorosilane. In this study, cost-effective water-glass silica aerogels were synthesized using an eco-friendly catechol derivative surface modifier instead of trimethylchlorosilane. Polydopamine was introduced to increase adhesion to the SiO<sub>2</sub> surface. The addition of 4-<i>tert</i>-butyl catechol and hexylamine imparted hydrophobicity to the surface and suppressed the polymerization of the polydopamine. After an ambient pressure drying process, catechol-modified aerogel exhibited a specific surface area of 377 m<sup>2</sup>/g and an average pore diameter of approximately 21 nm. To investigate their thermal conductivities, glass wool sheets were impregnated with catechol-modified aerogel. The thermal conductivity was 40.4 mWm<sup>−1</sup>K<sup>−1</sup>, which is lower than that of xerogel at 48.7 mWm<sup>−1</sup>K<sup>−1</sup>. Thus, by precisely controlling the catechol coating in the mesoporous framework, an eco-friendly synthetic method for aerogel preparation is proposed.https://www.mdpi.com/2079-4991/10/12/2406water-glass aerogelcatechol coatingeco-friendlytrimethylchlorosilane substituteambient pressure dryingthermal insulation
collection DOAJ
language English
format Article
sources DOAJ
author Hyeonjung Kim
Kangyong Kim
Hyunhong Kim
Doo Jin Lee
Jongnam Park
spellingShingle Hyeonjung Kim
Kangyong Kim
Hyunhong Kim
Doo Jin Lee
Jongnam Park
Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier
Nanomaterials
water-glass aerogel
catechol coating
eco-friendly
trimethylchlorosilane substitute
ambient pressure drying
thermal insulation
author_facet Hyeonjung Kim
Kangyong Kim
Hyunhong Kim
Doo Jin Lee
Jongnam Park
author_sort Hyeonjung Kim
title Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier
title_short Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier
title_full Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier
title_fullStr Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier
title_full_unstemmed Eco-Friendly Synthesis of Water-Glass-Based Silica Aerogels via Catechol-Based Modifier
title_sort eco-friendly synthesis of water-glass-based silica aerogels via catechol-based modifier
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2020-12-01
description Silica aerogels have attracted much attention owing to their excellent thermal insulation properties. However, the conventional synthesis of silica aerogels involves the use of expensive and toxic alkoxide precursors and surface modifiers such as trimethylchlorosilane. In this study, cost-effective water-glass silica aerogels were synthesized using an eco-friendly catechol derivative surface modifier instead of trimethylchlorosilane. Polydopamine was introduced to increase adhesion to the SiO<sub>2</sub> surface. The addition of 4-<i>tert</i>-butyl catechol and hexylamine imparted hydrophobicity to the surface and suppressed the polymerization of the polydopamine. After an ambient pressure drying process, catechol-modified aerogel exhibited a specific surface area of 377 m<sup>2</sup>/g and an average pore diameter of approximately 21 nm. To investigate their thermal conductivities, glass wool sheets were impregnated with catechol-modified aerogel. The thermal conductivity was 40.4 mWm<sup>−1</sup>K<sup>−1</sup>, which is lower than that of xerogel at 48.7 mWm<sup>−1</sup>K<sup>−1</sup>. Thus, by precisely controlling the catechol coating in the mesoporous framework, an eco-friendly synthetic method for aerogel preparation is proposed.
topic water-glass aerogel
catechol coating
eco-friendly
trimethylchlorosilane substitute
ambient pressure drying
thermal insulation
url https://www.mdpi.com/2079-4991/10/12/2406
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