TY - JOUR
T1 - A critical review of superinsulation performance of ceramic nanofibrous aerogel for extreme conditions
T2 - Modeling, fabrication, applications, and outlook
AU - Okafor, Peter Ebuka
AU - He, Chenbo
AU - Tang, Guihua
N1 - Publisher Copyright:
© 2024
PY - 2025/1
Y1 - 2025/1
N2 - • Ceramic aerogels fabricated with nanofibers have recently emerged as a new class of aerogels with remarkable insulation performance and features such as robust mechanical performance, ultra-low density, remarkable flexibility, ultra-low thermal conductivity, thermal stability, ultra-high temperature resistance, and enhanced extinction coefficient. As a result, they are an excellent choice for emerging engineering applications where ultra-lightweight and load-bearing materials are simultaneously crucial for high-temperature thermal insulation. Recently, several research articles have been undertaken to design, model, and fabricate ceramic nanofibers and nanofibrous aerogels to meet these requirements. We present an in-depth review based on the most recent progress of this unique material for high-temperature thermal insulation. This article would be a timely review to disseminate the most recent factors, progress, applications, insights, and future prospects in thermal transport for ceramic nanofibers and aerogels, as well as a roadmap that shows the way forward in the field.
AB - • Ceramic aerogels fabricated with nanofibers have recently emerged as a new class of aerogels with remarkable insulation performance and features such as robust mechanical performance, ultra-low density, remarkable flexibility, ultra-low thermal conductivity, thermal stability, ultra-high temperature resistance, and enhanced extinction coefficient. As a result, they are an excellent choice for emerging engineering applications where ultra-lightweight and load-bearing materials are simultaneously crucial for high-temperature thermal insulation. Recently, several research articles have been undertaken to design, model, and fabricate ceramic nanofibers and nanofibrous aerogels to meet these requirements. We present an in-depth review based on the most recent progress of this unique material for high-temperature thermal insulation. This article would be a timely review to disseminate the most recent factors, progress, applications, insights, and future prospects in thermal transport for ceramic nanofibers and aerogels, as well as a roadmap that shows the way forward in the field.
KW - Ceramic nanofibrous aerogel
KW - Composite
KW - Effective thermal conductivity
KW - Heat transfer properties
KW - Thermal insulation
KW - Ultra-high temperature
UR - https://www.scopus.com/pages/publications/85209902101
U2 - 10.1016/j.cis.2024.103352
DO - 10.1016/j.cis.2024.103352
M3 - 文献综述
C2 - 39591833
AN - SCOPUS:85209902101
SN - 0001-8686
VL - 335
JO - Advances in Colloid and Interface Science
JF - Advances in Colloid and Interface Science
M1 - 103352
ER -