Open Access
Chemistry of Aerogels and Their Applications
Тип публикации: Journal Article
Дата публикации: 2002-10-18
SCImago Q1
Tоп 10% SCImago
WOS Q1
БС1
SJR: 16.918
CiteScore: 109.1
Impact factor: 64.2
ISSN: 00092665, 15206890
PubMed ID:
12428989
General Chemistry
Краткое описание
In the present review, aerogels designate dried gels with a very high relative pore volume. These are versatile materials that are synthesized in a first step by low-temperature traditional sol-gel chemistry. However, while in the final step most wet gels are often dried by evaporation to produce so-called xerogels, aerogels are dried by other techniques, essentially supercritical drying. As a result, the dry samples keep the very unusual porous texture which they had in the wet stage. In general these dry solids have very low apparent densities, large specific surface areas, and in most cases they exhibit amorphous structures when examined by X-ray diffraction (XRD) methods. In addition, they are metastable from the point of view of their thermodynamic properties. Consequently, they often undertake a structural evolution by chemical transformation, when aged in a liquid medium and/or heat treated. As aerogels combine the properties of being highly divided solids with their metastable character, they can develop very attractive physical and chemical properties not achievable by other means of low temperature soft chemical synthesis. In other words, they form a new class of solids showing sophisticated potentialities for a range of applications. These applications as well as chemical and physical aspects of these materials were regularly detailed and discussed in a series of symposia on aerogels,1-5 the last of them being held in Albuquerque in 2000.6 Reviews were also regularly published, either on both xerogels and aerogels7 or more focused on the applications of aerogels.8-13 The particularly interesting properties of aerogels arise from the extraordinary flexibility of the solgel processing, coupled with original drying techniques. The wet chemistry is not basically different for making xerogels and aerogels. As this common basis has been extensively detailed in recent books,14 it does not need to be reviewed. Compared to traditional xerogels, the originality of aerogels comes from * To whom all correspondence should be addressed. † Institut de Recherches sur la Catalyse. ‡ Laboratoire d’Application de la Chimie à l’Environnement. 4243 Chem. Rev. 2002, 102, 4243−4265
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Pierre A. C., Pajonk G. M. Chemistry of Aerogels and Their Applications // Chemical Reviews. 2002. Vol. 102. No. 11. pp. 4243-4266.
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Pierre A. C., Pajonk G. M. Chemistry of Aerogels and Their Applications // Chemical Reviews. 2002. Vol. 102. No. 11. pp. 4243-4266.
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TY - JOUR
DO - 10.1021/cr0101306
UR - https://doi.org/10.1021/cr0101306
TI - Chemistry of Aerogels and Their Applications
T2 - Chemical Reviews
AU - Pierre, Alain C
AU - Pajonk, Gérard M
PY - 2002
DA - 2002/10/18
PB - American Chemical Society (ACS)
SP - 4243-4266
IS - 11
VL - 102
PMID - 12428989
SN - 0009-2665
SN - 1520-6890
ER -
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@article{2002_Pierre,
author = {Alain C Pierre and Gérard M Pajonk},
title = {Chemistry of Aerogels and Their Applications},
journal = {Chemical Reviews},
year = {2002},
volume = {102},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/cr0101306},
number = {11},
pages = {4243--4266},
doi = {10.1021/cr0101306}
}
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MLA
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Pierre, Alain C., and Gérard M Pajonk. “Chemistry of Aerogels and Their Applications.” Chemical Reviews, vol. 102, no. 11, Oct. 2002, pp. 4243-4266. https://doi.org/10.1021/cr0101306.
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