Silica aerogel-PVA dough: A high internal phase composite with superior thermal insulation and gas barrier
Publication type: Journal Article
Publication date: 2024-05-01
scimago Q1
wos Q1
SJR: 1.894
CiteScore: 16.8
Impact factor: 9.8
ISSN: 02663538, 18791050
Ceramics and Composites
General Engineering
Abstract
Silica aerogel (SA) has shown great promise in constructing thermal insulation composites in various forms. However, it is still challenging to disperse a huge amount of SA particles into other matrices for fabricating superior thermal insulation materials or highly filled masterbatch, owing to its high specific surface area and ultra-low density. Herein, inspired by high internal phase emulsion (HIPE), we successfully prepare processable SA/polyvinyl alcohol (PVA) composites (SA-PVA dough) with over 74 vol% dispersed SA, using a PVA aqueous solution as a binder. This is achieved by gradually mixing a large amount of hydrophobic SA filler into a small amount of PVA aqueous solution. The resulting SA-PVA dough exhibits an internal structure resembling that of HIPEs, with hydrophobic SA particles stabilized in the water phase by amphiphilic PVA chains, tightly packed within the thin continuous PVA aqueous phase. Benefiting from such a HIPE structure, the SA-PVA dough can be easily shaped into various forms and exhibits good applicability in further processing. The dried dough inherits the excellent properties of SA, including ultra-low density, superhydrophobicity (water contact angle: 153°), thermal insulation (thermal conductivity: 0.03 W m−1 K−1), and flame resistance. Moreover, the continuous PVA network structure, combined with the nanoscale pore structure of SA, provides the dough with excellent gas barrier properties, greatly expanding the application scope of SA-based composites.
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Metrics
12
Total citations:
12
Citations from 2024:
12
(100%)
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BibTex
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GOST
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Zhang J. et al. Silica aerogel-PVA dough: A high internal phase composite with superior thermal insulation and gas barrier // Composites Science and Technology. 2024. Vol. 251. p. 110553.
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Zhang J., Zhang J., Han Y., Han Y., Zhang L., Li Z., Li Z., Yang H., Zhang X., Zhang J., Zhang J. Silica aerogel-PVA dough: A high internal phase composite with superior thermal insulation and gas barrier // Composites Science and Technology. 2024. Vol. 251. p. 110553.
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RIS
Copy
TY - JOUR
DO - 10.1016/j.compscitech.2024.110553
UR - https://linkinghub.elsevier.com/retrieve/pii/S0266353824001234
TI - Silica aerogel-PVA dough: A high internal phase composite with superior thermal insulation and gas barrier
T2 - Composites Science and Technology
AU - Zhang, Jianchao
AU - Zhang, Jianchao
AU - Han, Yanchun
AU - Han, Yanchun
AU - Zhang, Liying
AU - Li, Zhaohui
AU - Li, Zhaohui
AU - Yang, Hongsheng
AU - Zhang, Xiaofang
AU - Zhang, Jianming
AU - Zhang, Jianming
PY - 2024
DA - 2024/05/01
PB - Elsevier
SP - 110553
VL - 251
SN - 0266-3538
SN - 1879-1050
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2024_Zhang,
author = {Jianchao Zhang and Jianchao Zhang and Yanchun Han and Yanchun Han and Liying Zhang and Zhaohui Li and Zhaohui Li and Hongsheng Yang and Xiaofang Zhang and Jianming Zhang and Jianming Zhang},
title = {Silica aerogel-PVA dough: A high internal phase composite with superior thermal insulation and gas barrier},
journal = {Composites Science and Technology},
year = {2024},
volume = {251},
publisher = {Elsevier},
month = {may},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0266353824001234},
pages = {110553},
doi = {10.1016/j.compscitech.2024.110553}
}