An unexpected behavior of graphene in graphene-silicon heterojunction junction solar cells when it is used as the window electrode is reported. Although the synthesized mono layer graphene exhibits better transparency and conductivity, the multilayer graphene enables much higher solar conversion ability of the solar cell. This surprising observation may be because the multilayer graphene can more effectively suppress charge recombination at the heterojunction interface, which increases the fill factor and enhances the cell performance.close17
Fabricated bi-layer graphene (BLG) has been studied as transparent and current spreading electrode (...
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (http://creativec...
The incorporation of graphene-based materials into solar cell represents a cost-effective option to ...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
In this work, a new design of transparent conductive electrode based on a graphene monolayer is eval...
Graphene has shown great application opportunities in future nanoelectronic devices because of its o...
Graphene has shown great application opportunities in future nanoelectronic devices due to its outst...
The charge transport in Schottky type solar cells fabricated from graphene methyl passivated silico...
Highly conductive semitransparent graphene sheets are combined with an n-type silicon (n-Si) wafer t...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Graphene has been intensively studied in photovoltaics focusing on emerging solar cells based on thi...
Graphene-on-semiconductor has been proved to be a quality heterojunction with efficient photoelectri...
The graphene/silicon (Gr/Si) heterojunction is currently the subject of an intense research activity...
Transparent conductive electrodes based on graphene have been previously proposed as an attractive c...
The number of studies on graphene/Si heterojunction solar cells has increased dramatically in recent...
Fabricated bi-layer graphene (BLG) has been studied as transparent and current spreading electrode (...
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (http://creativec...
The incorporation of graphene-based materials into solar cell represents a cost-effective option to ...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
In this work, a new design of transparent conductive electrode based on a graphene monolayer is eval...
Graphene has shown great application opportunities in future nanoelectronic devices because of its o...
Graphene has shown great application opportunities in future nanoelectronic devices due to its outst...
The charge transport in Schottky type solar cells fabricated from graphene methyl passivated silico...
Highly conductive semitransparent graphene sheets are combined with an n-type silicon (n-Si) wafer t...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Graphene has been intensively studied in photovoltaics focusing on emerging solar cells based on thi...
Graphene-on-semiconductor has been proved to be a quality heterojunction with efficient photoelectri...
The graphene/silicon (Gr/Si) heterojunction is currently the subject of an intense research activity...
Transparent conductive electrodes based on graphene have been previously proposed as an attractive c...
The number of studies on graphene/Si heterojunction solar cells has increased dramatically in recent...
Fabricated bi-layer graphene (BLG) has been studied as transparent and current spreading electrode (...
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (http://creativec...
The incorporation of graphene-based materials into solar cell represents a cost-effective option to ...