Graphene-on-semiconductor has been proved to be a quality heterojunction with efficient photoelectric conversion. In this work, we constructed Schottky junction solar cells by combing graphene woven fabrics (GWFs) and n-doped single crystal silicon, and examined the performance of solar cells when GWFs of different meshes were used. Sparse GWFs possessed high optical transparency but led to poor carrier collection, whereas dense GWFs could collect carriers efficiently but generated too few photo carriers due to low transparency. The GWFs with an optimal mesh could provide a good balance between the generation and collection of photo-induced carriers to deliver high power conversion efficiency. Keywords: Graphene, Heterojunction, Solar cel
By employing graphene quantum dots (GQDs), we have achieved a high efficiency of 16.55% in n-type Si...
By employing graphene quantum dots (GQDs), we have achieved a high efficiency of 16.55% in n-type Si...
Graphene has shown great application opportunities in future nanoelectronic devices because of its o...
The number of studies on graphene/Si heterojunction solar cells has increased dramatically in recent...
Highly conductive semitransparent graphene sheets are combined with an n-type silicon (n-Si) wafer t...
Graphene quantum dots (GQDs) possess extraordinary optical and electrical properties and show great ...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
The Schottky junction, with merits of material universality, low cost and easy fabrication, is an al...
Since the development of the world’s first practical solar cell in 1954 at Bell Laboratories, resear...
Graphene-Si solar cells have the potential to become low-cost, high-efficiency photovoltaics owing t...
An unexpected behavior of graphene in graphene-silicon heterojunction junction solar cells when it i...
Graphene has shown great application opportunities in future nanoelectronic devices due to its outst...
We developed a simple approach to fabricate graphene/Si heterojunction solar cells via direct growth...
Graphene has been intensively studied in photovoltaics focusing on emerging solar cells based on thi...
A new graphene-based flexible solar cell with a power conversion efficiency >10% has been designe...
By employing graphene quantum dots (GQDs), we have achieved a high efficiency of 16.55% in n-type Si...
By employing graphene quantum dots (GQDs), we have achieved a high efficiency of 16.55% in n-type Si...
Graphene has shown great application opportunities in future nanoelectronic devices because of its o...
The number of studies on graphene/Si heterojunction solar cells has increased dramatically in recent...
Highly conductive semitransparent graphene sheets are combined with an n-type silicon (n-Si) wafer t...
Graphene quantum dots (GQDs) possess extraordinary optical and electrical properties and show great ...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
The Schottky junction, with merits of material universality, low cost and easy fabrication, is an al...
Since the development of the world’s first practical solar cell in 1954 at Bell Laboratories, resear...
Graphene-Si solar cells have the potential to become low-cost, high-efficiency photovoltaics owing t...
An unexpected behavior of graphene in graphene-silicon heterojunction junction solar cells when it i...
Graphene has shown great application opportunities in future nanoelectronic devices due to its outst...
We developed a simple approach to fabricate graphene/Si heterojunction solar cells via direct growth...
Graphene has been intensively studied in photovoltaics focusing on emerging solar cells based on thi...
A new graphene-based flexible solar cell with a power conversion efficiency >10% has been designe...
By employing graphene quantum dots (GQDs), we have achieved a high efficiency of 16.55% in n-type Si...
By employing graphene quantum dots (GQDs), we have achieved a high efficiency of 16.55% in n-type Si...
Graphene has shown great application opportunities in future nanoelectronic devices because of its o...