International audienceIn this paper, we present the first steps of a process toward the development of MoS2/Si heterojunctions photovoltaics, using 2D 2H-MoS2, whose natural abundance and tunable bandgap make it suitable for such application. A focus is made here on the optimization of the MoS2 material and its deposition process, through preliminary optical and structural characterizations of thin 2H-MoS2 layers deposited on 80nm SiO2 on top of Si (001) substrates. Our investigations revealed oxidation of the MoS2 layers, and limited longitudinal crystallite size, which may strongly affect the band lineup between MoS2 and Si, and thus, the performance of the solar cell
MoS2 composed of earth‐abundant elements is considered as a promising hydrogen evolution reaction (H...
The two-dimensional (2D) layered molybdenum disulfide (MoS2) material represents a nominee potent fo...
ABSTRACT: Two-dimensional MoS2 is a promising material for next-generation electronic and optoelectr...
International audienceIn this paper, we present the first steps of a process toward the development ...
Silicon-based heterojunction (SHJ) solar cells demonstrate high efficiencies over their homojunction...
Silicon-based heterojunction (SHJ) solar cells demonstrate high efficiencies over their homojunction...
To understand the different mechanism occurring at the MoS2-silicon interface, we have fabricated a ...
The two-dimensional (2D) layered molybdenum disulfide (MoS2) material represents a nominee potent fo...
The two-dimensional (2D) layered molybdenum disulfide (MoS2) material represents a nominee potent fo...
The low dimensional chalcogenide materials with high band gap of ~1.8 eV, specially molybdenum di-su...
In the surge of recent successes of 2D materials following the rise of graphene, molybdenum disulfid...
Abstract The ongoing miniaturization of electronic devices has boosted the development of new post-s...
International audienceIn the surge of recent successes of 2D materials following the rise of graphen...
The ongoing miniaturization of electronic devices has boosted the development of new post silicon tw...
Two-dimensional transition-metal dichalcogenides (TMDCs) are very promising for photovoltaic (PV) ap...
MoS2 composed of earth‐abundant elements is considered as a promising hydrogen evolution reaction (H...
The two-dimensional (2D) layered molybdenum disulfide (MoS2) material represents a nominee potent fo...
ABSTRACT: Two-dimensional MoS2 is a promising material for next-generation electronic and optoelectr...
International audienceIn this paper, we present the first steps of a process toward the development ...
Silicon-based heterojunction (SHJ) solar cells demonstrate high efficiencies over their homojunction...
Silicon-based heterojunction (SHJ) solar cells demonstrate high efficiencies over their homojunction...
To understand the different mechanism occurring at the MoS2-silicon interface, we have fabricated a ...
The two-dimensional (2D) layered molybdenum disulfide (MoS2) material represents a nominee potent fo...
The two-dimensional (2D) layered molybdenum disulfide (MoS2) material represents a nominee potent fo...
The low dimensional chalcogenide materials with high band gap of ~1.8 eV, specially molybdenum di-su...
In the surge of recent successes of 2D materials following the rise of graphene, molybdenum disulfid...
Abstract The ongoing miniaturization of electronic devices has boosted the development of new post-s...
International audienceIn the surge of recent successes of 2D materials following the rise of graphen...
The ongoing miniaturization of electronic devices has boosted the development of new post silicon tw...
Two-dimensional transition-metal dichalcogenides (TMDCs) are very promising for photovoltaic (PV) ap...
MoS2 composed of earth‐abundant elements is considered as a promising hydrogen evolution reaction (H...
The two-dimensional (2D) layered molybdenum disulfide (MoS2) material represents a nominee potent fo...
ABSTRACT: Two-dimensional MoS2 is a promising material for next-generation electronic and optoelectr...