This dissertation describes efforts over the last five years to develop protective layers for semiconductor photoelectrodes based on monolayer or few-layer graphene sheets. Graphene is an attractive candidate for a protective layer because of its known chemical inertness, transparency, ease of deposition, and limited number of electronic states. Monolayer graphene was found to effectively inhibit loss of photocurrent over 1000 seconds at n-Si/aqueous electrolyte interfaces that exhibit total loss over photocurrent over 100 seconds. Further, the presence of graphene was found to effect only partial Fermi level pinning at the Si/graphene interface with respect to a range of nonaqueous electrolytes. Fluorination of graphene was found to extend...
Two significant challenges that impede the realization of inexpensive, solar-driven water electrolys...
International audienceWidely investigated in the 70’s and 80’s, photo-electrochemistry of semiconduc...
Photoelectrochemical cells are used to split hydrogen and oxygen from water molecules to generate ch...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
The behavior of graphene-coated n-type Si(111) photoanodes was compared to the behavior of H-termina...
The behavior of n-Si(111) photoanodes covered by monolayer sheets of fluorinated graphene (F–Gr) was...
The behavior of n-Si(111) photoanodes covered by monolayer sheets of fluorinated graphene (F–Gr) was...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
Graphene is an allotrope of carbon. Its structure is one-atom-thick planar sheets of carbon atoms th...
In this work, a new design of transparent conductive electrode based on a graphene monolayer is eval...
Graphene is an allotrope of carbon. Its structure is one-atom-thick planar sheets of carbon atoms th...
Two significant challenges that impede the realization of inexpensive, solar-driven water electrolys...
International audienceWidely investigated in the 70’s and 80’s, photo-electrochemistry of semiconduc...
Photoelectrochemical cells are used to split hydrogen and oxygen from water molecules to generate ch...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
Graphene may be an almost ideal protection layer for semiconductor photoelectrodes. It can be grown ...
The behavior of graphene-coated n-type Si(111) photoanodes was compared to the behavior of H-termina...
The behavior of n-Si(111) photoanodes covered by monolayer sheets of fluorinated graphene (F–Gr) was...
The behavior of n-Si(111) photoanodes covered by monolayer sheets of fluorinated graphene (F–Gr) was...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
After experimental discovery in 2004, graphene is one of the most extensively studied materials in l...
Graphene is an allotrope of carbon. Its structure is one-atom-thick planar sheets of carbon atoms th...
In this work, a new design of transparent conductive electrode based on a graphene monolayer is eval...
Graphene is an allotrope of carbon. Its structure is one-atom-thick planar sheets of carbon atoms th...
Two significant challenges that impede the realization of inexpensive, solar-driven water electrolys...
International audienceWidely investigated in the 70’s and 80’s, photo-electrochemistry of semiconduc...
Photoelectrochemical cells are used to split hydrogen and oxygen from water molecules to generate ch...