Dorothea Scheunemann
Has grant
Research Interests
Explore related searches
Contact this professor
Recent Grants
Grant: Close
Hybrid Thermoelectrics: From Model to Device
Open Date: 2019-01-15
Close Date: 2021-01-14
Grant: Close
Interface Recombination in Organic Solar Cells (InterRec)
Open Date: 2018-08-01
Close Date: 2019-01-01
Articles (10)
Preparation and Structural Characterization of Thin Films of CuInS<sub>2</sub> by Sintering Colloidally Synthesized Nanoparticles at Moderate Temperature
Copper indium disulfide nanoparticles continue attracting attention as absorber material in light harvesting devices. The preparation of thin films by deposition of this material from colloidal solution remains challenging. Typically, colloidal semiconductor nanoparticles are surrounded by long organic ligand molecules which are required to stabilize the particles during synthesis. A common way to obtain conductive thin films is the development of ligand exchange procedures that need to be applied prior to film deposition. However, in the case of copper indium disulfide nanoparticles, appropriate procedures are still missing. Therefore, an alternative approach is investigated herein. Colloidal copper indium disulfide nanoparticles are synthesized and deposited on substrates. Instead of applying a ligand exchange procedure, thermal removal of the ligands and sintering of the inorganic film are explored. Results on the preparation of the nanoparticle films, their structural investigation, and conductivity measurements are reported.
Year:
2023
Collaborators (8)
Davide Beretta
Empa Materials Science and Technology
Ronald Österbacka
Professor
Åbo Akademi
Laure Biniek
University of Strasbourg
Simone Fabiano
Professor of Materials Science
Linköping University
Koen Vandewal
Prof.
Universiteit Hasselt
Martijn Kemerink
professor
Heidelberg University
Christian Müller
Professor
Chalmers University of Technology
Daniele Fazzi
Tenure-Track (Senior) Assistant Professor (RTDB)
University of Bologna

How do I reach out?
Sign in for free to see their profile details and contact information.