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Thermal Stability of MxOy Doped Zirconia Aerogels (M = Y, Yb, Gd, Ce, Ca) Studied Through 1200°CThe high porosities and low densities of ceramic aerogels offer outstanding insulative performance in applications where weight is a critical factor. The high surface area-to-volume ratios and specific surface areas provide extremely low thermal conductivity, but also contribute to rapid densification of the pore structure at elevated temperatures. This densification diminishes their favorable properties and inhibits use of aerogels in high temperature applications. This work contributes to a design framework for thermally stable aerogels via the study of dopant chemistry (Y, Yb, Gd, Ca, Ce) in zirconia aerogels. The structural evolution was studied to 1200°C using nitrogen physisorption, scanning electron microscopy, and x-ray diffraction. The role of dopant identity and concentration in thermal stability was elucidated. In context of the design framework, dopant chemistry is an aggregate for many closely related material properties, each of which may contribute to aerogel structural evolution. To develop a truly predictive design framework for ceramic-based aerogels, systematic and comprehensive evaluation of thermodynamic and kinetic properties must be performed in conjunction with studies on structural evolution.
Document ID
20230009995
Acquisition Source
Glenn Research Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Nathaniel S. Olson ORCID
(University of Illinois at Urbana Champaign Urbana, Illinois, United States)
Frances I. Hurwitz
(Glenn Research Center Cleveland, Ohio, United States)
Jamesa L. Stokes
(Glenn Research Center Cleveland, Ohio, United States)
Haiquan Guo
(Universities Space Research Association Columbia, Maryland, United States)
Richard B. Rogers
(Glenn Research Center Cleveland, Ohio, United States)
Jessica A. Krogstad
(University of Illinois at Urbana Champaign Urbana, Illinois, United States)
Date Acquired
July 7, 2023
Publication Date
August 10, 2023
Publication Information
Publication: Journal of the American Ceramic Society
Publisher: Wiley
Volume: 106
Issue: 12
Issue Publication Date: December 1, 2023
ISSN: 0002-7820
e-ISSN: 1551-2916
Subject Category
Chemistry And Materials (General)
Funding Number(s)
WBS: 725017.02.03.04.02
CONTRACT_GRANT: 80NSSC18K1189
CONTRACT_GRANT: 80GRC020D0003
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Peer Committee
Keywords
aerogel
zirconia
thermal management
porous ceramics
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