The conventional graphene-silicon Schottky junction solar cell inevitably involves the graphene growth and transfer process, which results in complicated technology, loss of quality of the graphene, extra cost, and environmental unfriendliness. Moreover, the conventional transfer method is not well suited to conformationally coat graphene on a three-dimensional (3D) silicon surface. Thus, worse interfacial conditions are inevitable. In this work, we directly grow graphene nanowalls (GNWs) onto the micropyramidal silicon (MP) by the plasma-enhanced chemical vapor deposition method. By controlling growth time, the cell exhibits optimal pristine photovoltaic performance of 3.8%. Furthermore, we improve the conductivity of the GNW electrode by ...
International audienceOptoelectronic devices based on high aspect ratio nanowires bring new challeng...
Graphene-Si solar cells have the potential to become low-cost, high-efficiency photovoltaics owing t...
Fabrication of high performance micro-supercapacitor (mu-SC) based on Silicon nanowires (SiNWs) at l...
We developed a simple approach to fabricate graphene/Si heterojunction solar cells via direct growth...
Since the development of the world’s first practical solar cell in 1954 at Bell Laboratories, resear...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
Highly conductive semitransparent graphene sheets are combined with an n-type silicon (n-Si) wafer t...
A new graphene-based flexible solar cell with a power conversion efficiency >10% has been designe...
Graphene–silicon (Gr-Si) heterojunction solar cells have been recognized as one of the most low-cost...
Anchoring ionic liquid-functionalized graphene nanoparticles (IL-GNP) to silicon nanowires (SiNW) im...
Nanocarbon structures such as carbon nano-tubes (CNTs) and graphene (G) have been combined with crys...
We show that interface tailoring is an effective approach towards high performance G/Si Schottky-bar...
Despite the outstanding features of high transmittance and low sheet resistance from silver nanowire...
In graphene-Si (Gr-Si) solar cells, chemical doping could remarkably enhance the performance of the ...
The Schottky junction, with merits of material universality, low cost and easy fabrication, is an al...
International audienceOptoelectronic devices based on high aspect ratio nanowires bring new challeng...
Graphene-Si solar cells have the potential to become low-cost, high-efficiency photovoltaics owing t...
Fabrication of high performance micro-supercapacitor (mu-SC) based on Silicon nanowires (SiNWs) at l...
We developed a simple approach to fabricate graphene/Si heterojunction solar cells via direct growth...
Since the development of the world’s first practical solar cell in 1954 at Bell Laboratories, resear...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
Highly conductive semitransparent graphene sheets are combined with an n-type silicon (n-Si) wafer t...
A new graphene-based flexible solar cell with a power conversion efficiency >10% has been designe...
Graphene–silicon (Gr-Si) heterojunction solar cells have been recognized as one of the most low-cost...
Anchoring ionic liquid-functionalized graphene nanoparticles (IL-GNP) to silicon nanowires (SiNW) im...
Nanocarbon structures such as carbon nano-tubes (CNTs) and graphene (G) have been combined with crys...
We show that interface tailoring is an effective approach towards high performance G/Si Schottky-bar...
Despite the outstanding features of high transmittance and low sheet resistance from silver nanowire...
In graphene-Si (Gr-Si) solar cells, chemical doping could remarkably enhance the performance of the ...
The Schottky junction, with merits of material universality, low cost and easy fabrication, is an al...
International audienceOptoelectronic devices based on high aspect ratio nanowires bring new challeng...
Graphene-Si solar cells have the potential to become low-cost, high-efficiency photovoltaics owing t...
Fabrication of high performance micro-supercapacitor (mu-SC) based on Silicon nanowires (SiNWs) at l...