Jacques Kenyon
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View article: From Solutions to Photovoltaic Devices: Assessing the Impact of Zn Complexation for Bifacial Cu <sub>2</sub> ZnSn(S,Se) <sub>4</sub> Thin Films
From Solutions to Photovoltaic Devices: Assessing the Impact of Zn Complexation for Bifacial Cu <sub>2</sub> ZnSn(S,Se) <sub>4</sub> Thin Films Open
Solution-based deposition of high-quality inorganic compound semiconductors onto a variety of substrates is a key challenge toward integrating photovoltaic technologies into a wide range of infrastructures. Cu2ZnSn-(S,Se)4 (CZTSSe) is one …
View article: Mapping the surface electronic landscape of solution-processed CuIn(S,Se) <sub>2</sub> thin-films as a function of the Cu/In ratio
Mapping the surface electronic landscape of solution-processed CuIn(S,Se) <sub>2</sub> thin-films as a function of the Cu/In ratio Open
Tuning the Cu/In ratio in solution-processed CISSe thin films reveals a complex interplay between bulk and surface disorder, significantly affecting the optoelectronic properties, phase formation and photovoltaic performance.
View article: Utilizing Solvent Repulsion between Dimethylformamide and Isopropanol to Manipulate Sn Distribution for Bifacial Cu<sub>2</sub>ZnSn(S,Se)<sub>4</sub> Solar Cells
Utilizing Solvent Repulsion between Dimethylformamide and Isopropanol to Manipulate Sn Distribution for Bifacial Cu<sub>2</sub>ZnSn(S,Se)<sub>4</sub> Solar Cells Open
Rationalizing the role of chemical interactions in the precursor solutions on the structure, morphology, and performance of thin-film Cu2ZnSn(S,Se)4 (CZTSSe) is key for the development of bifacial and other photovoltaic (PV) device archite…