Transition metal carbides and nitrides (MXenes) have shown great potential for constructing thin, high-performance electromagnetic interference (EMI) shields. The challenges with these materials involve the weak interfacial interactions of MXenes, which results in inferior mechanical properties and structure of the MXene films and a conductivity/EMI shielding performance decay related to the poor MXene oxidation stability. Numerous efforts have been devoted to improving the mechanical properties or oxidation stability of the films, which always comes at the expense of EMI shielding performance. Here, ultrafine (≈1.4 nm) cellulose nanofibers are employed to achieve physical and chemical dual cross-linking of MXene (PC-MXene) nanosheets. The ...
Abstract Combination of flexible multifunctional stealth technology properties such as electromagnet...
With the growing popularity of electrical communication equipment, high-performance electromagnetic ...
The development of new materials for electromagnetic interference (EMI) shielding is an important ar...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
Although high-performance electromagnetic shields have been developed widely due to the increased el...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
MXenes, a large family of titanium carbides and nitrides, have emerged as potential electromagnetic ...
Designing lightweight nanostructured aerogels for high‐performance electromagnetic interference (EMI...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
In order to overcome the various defects caused by the limitations of solid metal as a shielding mat...
MXenes are a growing family of two-dimensional transition metal carbides and/or nitrides that are de...
Recent advances in MXene (Ti3C2Tx) fibers, prepared from electrically conductive and mechanically st...
In this work, 3D highly electrically conductive cellulose nanofibers (CNF)/Ti3C2Tx MXene aerogels (C...
Wearable electromagnetic interference (EMI) shielding fabrics are highly desirable with the rapid de...
Abstract Combination of flexible multifunctional stealth technology properties such as electromagnet...
With the growing popularity of electrical communication equipment, high-performance electromagnetic ...
The development of new materials for electromagnetic interference (EMI) shielding is an important ar...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
Ambient-pressure-dried (APD) preparation of transition metal carbide/nitrides (MXene) aerogels is hi...
Although high-performance electromagnetic shields have been developed widely due to the increased el...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
MXenes, a large family of titanium carbides and nitrides, have emerged as potential electromagnetic ...
Designing lightweight nanostructured aerogels for high‐performance electromagnetic interference (EMI...
Designing lightweight nanostructured aerogels for high-performance electromagnetic interference (EMI...
In order to overcome the various defects caused by the limitations of solid metal as a shielding mat...
MXenes are a growing family of two-dimensional transition metal carbides and/or nitrides that are de...
Recent advances in MXene (Ti3C2Tx) fibers, prepared from electrically conductive and mechanically st...
In this work, 3D highly electrically conductive cellulose nanofibers (CNF)/Ti3C2Tx MXene aerogels (C...
Wearable electromagnetic interference (EMI) shielding fabrics are highly desirable with the rapid de...
Abstract Combination of flexible multifunctional stealth technology properties such as electromagnet...
With the growing popularity of electrical communication equipment, high-performance electromagnetic ...
The development of new materials for electromagnetic interference (EMI) shielding is an important ar...