TY - JOUR
T1 - Rotation Lifting and Spinning for Durable Ceramic Aerogel Fiber
AU - Qiu, Jiaheng
AU - Niu, Min
AU - Su, Lei
AU - Lu, De
AU - Peng, Kang
AU - Wang, Hongjie
N1 - Publisher Copyright:
© 2025 American Chemical Society
PY - 2025/7/30
Y1 - 2025/7/30
N2 - Aerogel fibers have attracted significant interest due to their low thermal conductivity and notable flexibility. This flexibility enables them to be bent, tied, and woven into fabrics, thereby broadening their applications. However, current aerogel fibers suffer from limited environmental stability and a complex manufacturing process. Herein, a novel rotation lifting and spinning method is proposed to fabricate continuous and flexible ceramic aerogel fibers using ceramic nanowires and ethanol as the starting materials. The synthesized Si3N4aerogel fiber (SNAF), composed of Si3N4nanowires, achieves a high porosity of 98.5% and notable tensile strength reaching 3.5 MPa. Moreover, the fiber exhibits high thermal insulation capabilities, fire resistance, and remarkable high-temperature stability, which maintains its high strength and flexibility over a wide temperature range from −196 to 1000 °C. This study makes progress in the synthesis of ceramic aerogel fibers and broadens their applications in various high-temperature scenarios.
AB - Aerogel fibers have attracted significant interest due to their low thermal conductivity and notable flexibility. This flexibility enables them to be bent, tied, and woven into fabrics, thereby broadening their applications. However, current aerogel fibers suffer from limited environmental stability and a complex manufacturing process. Herein, a novel rotation lifting and spinning method is proposed to fabricate continuous and flexible ceramic aerogel fibers using ceramic nanowires and ethanol as the starting materials. The synthesized Si3N4aerogel fiber (SNAF), composed of Si3N4nanowires, achieves a high porosity of 98.5% and notable tensile strength reaching 3.5 MPa. Moreover, the fiber exhibits high thermal insulation capabilities, fire resistance, and remarkable high-temperature stability, which maintains its high strength and flexibility over a wide temperature range from −196 to 1000 °C. This study makes progress in the synthesis of ceramic aerogel fibers and broadens their applications in various high-temperature scenarios.
KW - ceramic aerogel fiber
KW - ceramic nanowires
KW - resistance to harsh conditions
KW - rotation lifting and spinning
UR - https://www.scopus.com/pages/publications/105012780670
U2 - 10.1021/acsami.5c09931
DO - 10.1021/acsami.5c09931
M3 - 文章
C2 - 40693502
AN - SCOPUS:105012780670
SN - 1944-8244
VL - 17
SP - 43255
EP - 43263
JO - ACS Applied Materials and Interfaces
JF - ACS Applied Materials and Interfaces
IS - 30
ER -