TY - JOUR
T1 - Advances in Electrospun Nanofibrous Aerogels
T2 - Pioneering Methods, Versatile Applications, and Future Horizons
AU - Lu, Xiaochen
AU - Lin, Pengfei
AU - Huang, Yanglei
AU - He, Xinping
AU - Yi, Chunhai
AU - Sun, Jiawei
AU - Farid, Muhammad Usman
AU - An, Alicia Kyoungjin
AU - Guo, Jiaxin
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2025/10
Y1 - 2025/10
N2 - As an emerging nanomaterial, nanofibrous aerogel possesses advantages such as low density, large specific surface area, low thermal conductivity, and high mechanical stability. Preparing nanofiber aerogels through electrospinning is an emerging research topic. This review focuses on the key fabrication techniques for electrospun nanofibrous aerogels, including freeze-drying, direct electrospinning, layer-by-layer stacking, and thermally induced self-agglomeration. In addition, by combining nanofibers’ distinctive properties and aerogels’ physical characteristics, nanofibrous aerogels demonstrate various potential academic and industrial applications, including thermal insulation, sound absorption, solar desalination, air filtration, oil–water separation, and biomedical engineering. This paper provides an overview of the fundamentals and recent advancements in electrospinning, summarizes the fabrication methods and applications of the most representative nanofibrous aerogels in recent years, and offers insights into nanofibrous aerogels’ challenges and prospects.
AB - As an emerging nanomaterial, nanofibrous aerogel possesses advantages such as low density, large specific surface area, low thermal conductivity, and high mechanical stability. Preparing nanofiber aerogels through electrospinning is an emerging research topic. This review focuses on the key fabrication techniques for electrospun nanofibrous aerogels, including freeze-drying, direct electrospinning, layer-by-layer stacking, and thermally induced self-agglomeration. In addition, by combining nanofibers’ distinctive properties and aerogels’ physical characteristics, nanofibrous aerogels demonstrate various potential academic and industrial applications, including thermal insulation, sound absorption, solar desalination, air filtration, oil–water separation, and biomedical engineering. This paper provides an overview of the fundamentals and recent advancements in electrospinning, summarizes the fabrication methods and applications of the most representative nanofibrous aerogels in recent years, and offers insights into nanofibrous aerogels’ challenges and prospects.
KW - Electrospinning
KW - Fabrication
KW - Multifunctional applications
KW - Nanofibrous aerogels
UR - https://www.scopus.com/pages/publications/105005777089
U2 - 10.1007/s42765-025-00552-7
DO - 10.1007/s42765-025-00552-7
M3 - 文献综述
AN - SCOPUS:105005777089
SN - 2524-7921
VL - 7
SP - 1350
EP - 1382
JO - Advanced Fiber Materials
JF - Advanced Fiber Materials
IS - 5
ER -