Photoactive sulfide materials typically under-perform with respect to their theoretical maximum photovoltaic efficiency compared to other light absorbing solids. In an effort to reveal the underlying cause of this situation, we investigate several potential back contact metals for photovoltaic devices using the principles of band alignment; principles that have repeatedly shown to be of key importance in this field. Specifically, the sulfides SnS, CuInS2 and Cu2ZnSnS4 are studied in contact with the metals Mo, Sn, Ti, W and Zr and their common terminations. We also consider the stability with respect to interfacial chemical degradation and show that almost all systems used to date are likely to form interstitial two-dimensional metal disulf...
peer reviewedTin sulfide is being widely investigated as an earth-abundant light harvesting material...
Cu2SrSnS4 (CSTS) is a promising alternative candidate to Cu2ZnSnS4 (CZTS) for single- or multi-junct...
The energy band alignment at interfaces between Cu-chalcopyrites and Zn(O,S) buffer layers, which ar...
Trabajo presentado en EUROMAT: European Congress and Exhibition on advanced materials and processes,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
Tin sulfide solar cells show relatively poor efficiencies despite attractive photovoltaic properties...
Several complex compounds that result from inserting atoms of certain transition metals in known sem...
Energy band alignment plays an important role in thin film solar cells. This article presents an ove...
Kesterite semiconductors, derived from the mineral Cu2(Zn,Fe)SnS4, adopt superstructures of the zinc...
The various phases of tin sulfide have been studied as semiconductors since the 1960s and are now be...
SnS is a metal monochalcogenide suitable for use as absorber material in thin film photovoltaic cell...
International audienceThis paper investigates the effects of partial substitution of zinc (Zn) in pu...
Trabajo presentado en el E-MRS 2013 Spring Meeting, celebrado en Estrasburgo (Francia) del 27 al 31 ...
Cu<sub>2</sub>ZnSnS<sub>4</sub>-based solar cells, which constitute an inexpensive, beyond-Si photov...
At some stage in the near future, the rapid expansion of photovoltaic solar energy conversion based ...
peer reviewedTin sulfide is being widely investigated as an earth-abundant light harvesting material...
Cu2SrSnS4 (CSTS) is a promising alternative candidate to Cu2ZnSnS4 (CZTS) for single- or multi-junct...
The energy band alignment at interfaces between Cu-chalcopyrites and Zn(O,S) buffer layers, which ar...
Trabajo presentado en EUROMAT: European Congress and Exhibition on advanced materials and processes,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
Tin sulfide solar cells show relatively poor efficiencies despite attractive photovoltaic properties...
Several complex compounds that result from inserting atoms of certain transition metals in known sem...
Energy band alignment plays an important role in thin film solar cells. This article presents an ove...
Kesterite semiconductors, derived from the mineral Cu2(Zn,Fe)SnS4, adopt superstructures of the zinc...
The various phases of tin sulfide have been studied as semiconductors since the 1960s and are now be...
SnS is a metal monochalcogenide suitable for use as absorber material in thin film photovoltaic cell...
International audienceThis paper investigates the effects of partial substitution of zinc (Zn) in pu...
Trabajo presentado en el E-MRS 2013 Spring Meeting, celebrado en Estrasburgo (Francia) del 27 al 31 ...
Cu<sub>2</sub>ZnSnS<sub>4</sub>-based solar cells, which constitute an inexpensive, beyond-Si photov...
At some stage in the near future, the rapid expansion of photovoltaic solar energy conversion based ...
peer reviewedTin sulfide is being widely investigated as an earth-abundant light harvesting material...
Cu2SrSnS4 (CSTS) is a promising alternative candidate to Cu2ZnSnS4 (CZTS) for single- or multi-junct...
The energy band alignment at interfaces between Cu-chalcopyrites and Zn(O,S) buffer layers, which ar...