The Schottky junction, with merits of material universality, low cost and easy fabrication, is an alternative structure for solar cells. Compared to traditional indium-tin-oxide (ITO) based Schottky junction solar cells, graphene-based ones have merits of low cost, performance stability, and are applicable to flexible devices. In this highlight, we survey the recent research on graphene-based Schottky junction solar cells, including graphene-on-silicon Schottky junction solar cells and graphene/single NW (NB) Schottky junction solar cells. The working principle of them is discussed. These works demonstrate that graphene-based Schottky junction structures are promising candidates for developing diverse novel high-efficient and low-cost photo...
Graphene-on-semiconductor has been proved to be a quality heterojunction with efficient photoelectri...
Engineering tunable graphene-semiconductor interfaces while simultaneously preserving the superior p...
We have combined two planar nanostructures, graphene and CdSe nanobelts, to construct Schottky junct...
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...
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...
We report a theoretical study about the performances of graphene on semiconductor Schottky barrier s...
In the past decade graphene has been one of the most studied materials for several unique and excell...
Chemical Vapor Deposition (CVD)-graphene has potentially been integrated with silicon (Si) substrate...
Silicon p-n junction solar cells have a power conversion efficiency (PCE) up to 12%. Graphene, which...
Commercial solar cells have a power conversion efficiency (PCE) in the range of 10–22% with differen...
Main focus of this bachelor thesis is on fabrication, characterization and modification of graphene-...
Graphene, a one-atom thick layer of graphite with a two-dimensional sp(2)-hybridized carbon network,...
Due to its outstanding features, graphene has become a vital topic in nanotechnology applications su...
Graphene-on-semiconductor has been proved to be a quality heterojunction with efficient photoelectri...
Engineering tunable graphene-semiconductor interfaces while simultaneously preserving the superior p...
We have combined two planar nanostructures, graphene and CdSe nanobelts, to construct Schottky junct...
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...
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...
We report a theoretical study about the performances of graphene on semiconductor Schottky barrier s...
In the past decade graphene has been one of the most studied materials for several unique and excell...
Chemical Vapor Deposition (CVD)-graphene has potentially been integrated with silicon (Si) substrate...
Silicon p-n junction solar cells have a power conversion efficiency (PCE) up to 12%. Graphene, which...
Commercial solar cells have a power conversion efficiency (PCE) in the range of 10–22% with differen...
Main focus of this bachelor thesis is on fabrication, characterization and modification of graphene-...
Graphene, a one-atom thick layer of graphite with a two-dimensional sp(2)-hybridized carbon network,...
Due to its outstanding features, graphene has become a vital topic in nanotechnology applications su...
Graphene-on-semiconductor has been proved to be a quality heterojunction with efficient photoelectri...
Engineering tunable graphene-semiconductor interfaces while simultaneously preserving the superior p...
We have combined two planar nanostructures, graphene and CdSe nanobelts, to construct Schottky junct...