As a novel family of 2D materials, MXenes are supposed to play a vital role in optoelectronic devices and systems due to their high conductivity, good optical properties, and favorable compatibility with water and organic solvents. However, the application of MXenes in highly sensitive photodetection is far scarcely investigated. Here, we demonstrate high-quality Ti3C2Tx/GaAs Schottky junction by simply dripping Ti3C2Tx MXene solution on a pre-patterned GaAs substrate. Owing to the wide absorption of MXene and the good quality junction, the self-driven Ti3C2Tx/GaAs Schottky junction photodetector with an impressive performance is realized. The assembled photodetector exhibits a high sensitivity over a wide waveband with a good responsivity ...
We present a self-powered, high-performance graphene-enhanced ultraviolet silicon Schottky photodete...
Skin-like second-near-infrared (NIR-II) photodetectors are key requirements for a flexible photodete...
Topological insulators have shown great potential for future optoelectronic technology due to their ...
International audience2D transition metal carbides, known as MXenes, are transparent when the sample...
Topological insulators, such as Bi2Se3, show great promise in the quest for materials with exception...
MXenes have recently shown impressive optical and plasmonic properties associated with their ultrath...
Two-dimensional (2D) layers of transition metal carbides, nitrides, or carbonitrides, collectively r...
Two-dimensional (2D) materials were widely used in sensing owing to the tunable physical or chemical...
© 2020 American Chemical Society Two-dimensional (2D) layered materials with properties such as a la...
Nanomaterials are vital to the realization of photoelectrochemical (PEC) sensing platform that provi...
International audienceHybrid van der Waals heterostructures comprising ultrathin layers of different...
Two-dimensional transition metal carbides, nitrides, and carbonitrides, collectively known as MXenes...
ABSTRACT: We report on the simple fabrication of monolayer graphene (MLG)/germanium (Ge) heterojunct...
ZnO nanomaterial-based UV photodetectors (UV PDs) have a long response time and poor responsiveness....
In the pursuit of broadband photodetection materials from visible to mid-IR region, the fresh three-...
We present a self-powered, high-performance graphene-enhanced ultraviolet silicon Schottky photodete...
Skin-like second-near-infrared (NIR-II) photodetectors are key requirements for a flexible photodete...
Topological insulators have shown great potential for future optoelectronic technology due to their ...
International audience2D transition metal carbides, known as MXenes, are transparent when the sample...
Topological insulators, such as Bi2Se3, show great promise in the quest for materials with exception...
MXenes have recently shown impressive optical and plasmonic properties associated with their ultrath...
Two-dimensional (2D) layers of transition metal carbides, nitrides, or carbonitrides, collectively r...
Two-dimensional (2D) materials were widely used in sensing owing to the tunable physical or chemical...
© 2020 American Chemical Society Two-dimensional (2D) layered materials with properties such as a la...
Nanomaterials are vital to the realization of photoelectrochemical (PEC) sensing platform that provi...
International audienceHybrid van der Waals heterostructures comprising ultrathin layers of different...
Two-dimensional transition metal carbides, nitrides, and carbonitrides, collectively known as MXenes...
ABSTRACT: We report on the simple fabrication of monolayer graphene (MLG)/germanium (Ge) heterojunct...
ZnO nanomaterial-based UV photodetectors (UV PDs) have a long response time and poor responsiveness....
In the pursuit of broadband photodetection materials from visible to mid-IR region, the fresh three-...
We present a self-powered, high-performance graphene-enhanced ultraviolet silicon Schottky photodete...
Skin-like second-near-infrared (NIR-II) photodetectors are key requirements for a flexible photodete...
Topological insulators have shown great potential for future optoelectronic technology due to their ...