TY - JOUR
T1 - A mini-review of MXene porous films
T2 - Preparation, mechanism and application
AU - Zhang, Yali
AU - Yan, Yi
AU - Qiu, Hua
AU - Ma, Zhonglei
AU - Ruan, Kunpeng
AU - Gu, Junwei
N1 - Publisher Copyright:
© 2021
PY - 2022/3/20
Y1 - 2022/3/20
N2 - MXene presents excellent electrical conductivity, abundant surface functional groups and wonderful film-forming performance, but the lamellar layers are prone to self-stacking during film formation, which will reduce the loss of electromagnetic waves, hinder ion transmission, and limit the effective load of other functional materials. The construction of the porous structure can effectively solve the self-stacking problem of MXene sheets. This article reviews the research progress of MXene porous films for electromagnetic interference (EMI) shielding, lithium/sodium ion batteries, pseudocapacitors, and biomedical science applications. It focuses on the preparation methods of MXene porous films, and discusses the pore-forming mechanism of the porous structure formed by different preparation methods and the internal relationship between the “microstructure-macroscopic performance” of the MXene porous films, points out the key scientific and technical bottlenecks that need to be solved urgently in the preparation and application of the MXene porous films. It is hoped to provide certain guidance for the design, preparation, optimization, industrial application, and development of MXene porous films.
AB - MXene presents excellent electrical conductivity, abundant surface functional groups and wonderful film-forming performance, but the lamellar layers are prone to self-stacking during film formation, which will reduce the loss of electromagnetic waves, hinder ion transmission, and limit the effective load of other functional materials. The construction of the porous structure can effectively solve the self-stacking problem of MXene sheets. This article reviews the research progress of MXene porous films for electromagnetic interference (EMI) shielding, lithium/sodium ion batteries, pseudocapacitors, and biomedical science applications. It focuses on the preparation methods of MXene porous films, and discusses the pore-forming mechanism of the porous structure formed by different preparation methods and the internal relationship between the “microstructure-macroscopic performance” of the MXene porous films, points out the key scientific and technical bottlenecks that need to be solved urgently in the preparation and application of the MXene porous films. It is hoped to provide certain guidance for the design, preparation, optimization, industrial application, and development of MXene porous films.
KW - Application fields
KW - MXene porous films
KW - Pore formation mechanism
KW - Preparation method
UR - http://www.scopus.com/inward/record.url?scp=85114780711&partnerID=8YFLogxK
U2 - 10.1016/j.jmst.2021.08.001
DO - 10.1016/j.jmst.2021.08.001
M3 - 文献综述
AN - SCOPUS:85114780711
SN - 1005-0302
VL - 103
SP - 42
EP - 49
JO - Journal of Materials Science and Technology
JF - Journal of Materials Science and Technology
ER -