Black silicon, which is an attractive material due to its optical properties, is prepared mainly by laser inducing in an SF6 atmosphere. Considering the effect of SF6 gas on the environment and human health, here we propose an efficient, economical, and green approach to process large-scale black silicon. In the wavelength range of 0.3–2.5 µm, the role of air could replace SF6 gas to texture black silicon by laser inducing with appropriate processing parameters. Then, to extend the working window of its excellent light-trapping status, laser-plasma shockwave cleaning was introduced to eliminate the deposition and improve the structures and morphology. The results revealed that the micro-nano structures became higher, denser, and more unifor...
Owing to its extremely low light absorption, black silicon has been widely investigated and reported...
International audienceFor the first time, we show that the density of nanostructures on Black Silico...
“Black silicon” is a novel type of material, which can absorb incident sun light by approximately 98...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
Irradiating a planar silicon surface with femtosecond laser pulses under a sulfuric atmosphere creat...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
AbstractWe present a femtosecond laser pulse process that induces a texture-like surface structure o...
In this paper, we take the strategy of direct laser interference technology to modify the silicon su...
The physical properties of black silicon (b-Si) formed on Si wafers by reactive ion etching in chlor...
International audienceFemtosecond lasers allow one to functionalize surfaces at a micro and nanomete...
Black Silicon nanostructures are fabricated by Inductively Coupled Plasma Reactive Ion Etching (ICP-...
Lataa julkaisu, kun saatavilla.In semiconductor manufacturing, black silicon (bSi) has traditionally...
Surface texturing of silicon substrates is performed by femtosecond laser irradiation at high repeti...
Hyperdoped black silicon fabricated with femtosecond laser irradiation has attracted interest for ap...
This paper presents a fabrication technology of 'Black Silicon' with superhydrophobicity a...
Owing to its extremely low light absorption, black silicon has been widely investigated and reported...
International audienceFor the first time, we show that the density of nanostructures on Black Silico...
“Black silicon” is a novel type of material, which can absorb incident sun light by approximately 98...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
Irradiating a planar silicon surface with femtosecond laser pulses under a sulfuric atmosphere creat...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
AbstractWe present a femtosecond laser pulse process that induces a texture-like surface structure o...
In this paper, we take the strategy of direct laser interference technology to modify the silicon su...
The physical properties of black silicon (b-Si) formed on Si wafers by reactive ion etching in chlor...
International audienceFemtosecond lasers allow one to functionalize surfaces at a micro and nanomete...
Black Silicon nanostructures are fabricated by Inductively Coupled Plasma Reactive Ion Etching (ICP-...
Lataa julkaisu, kun saatavilla.In semiconductor manufacturing, black silicon (bSi) has traditionally...
Surface texturing of silicon substrates is performed by femtosecond laser irradiation at high repeti...
Hyperdoped black silicon fabricated with femtosecond laser irradiation has attracted interest for ap...
This paper presents a fabrication technology of 'Black Silicon' with superhydrophobicity a...
Owing to its extremely low light absorption, black silicon has been widely investigated and reported...
International audienceFor the first time, we show that the density of nanostructures on Black Silico...
“Black silicon” is a novel type of material, which can absorb incident sun light by approximately 98...