Tuning halide perovskite energy levels
Canil, Laura; Cramer, Tobias; Fraboni, Beatrice; Ricciarelli, Damiano; Meggiolaro, Daniele; Singh, Ajay; Liu, Maning; Rusu, Marin; Wolff, Christian M.; Phung, Nga; Wang, Qiong; Neher, Dieter; Unold, Thomas; Vivo, Paola; Gagliardi, Alessio; De Angelis, Filippo; Abate, Antonio (2021-03)
Canil, Laura
Cramer, Tobias
Fraboni, Beatrice
Ricciarelli, Damiano
Meggiolaro, Daniele
Singh, Ajay
Liu, Maning
Rusu, Marin
Wolff, Christian M.
Phung, Nga
Wang, Qiong
Neher, Dieter
Unold, Thomas
Vivo, Paola
Gagliardi, Alessio
De Angelis, Filippo
Abate, Antonio
03 / 2021
Energy and Environmental Science
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202105275495
https://urn.fi/URN:NBN:fi:tuni-202105275495
Kuvaus
Peer reviewed
Tiivistelmä
<p>The ability to control the energy levels in semiconductors is compelling for optoelectronic applications. In this study, we managed to tune the work function (WF) of halide perovskite semiconductors using self-assembled monolayers of small molecules to induce stable dipoles at the surface. The direction and intensity of the surface dipoles rely on specific molecule-to-surface interactions. Electron acceptor or donor molecules result in the positive or negative WF shifts up to several hundreds of meV. Our approach provides a versatile tool to control the WF of halide perovskite and adjust the energy level alignment at the interface with charge transport materials in perovskite-based optoelectronics. The impact on perovskite solar cells is reported and discussed in detail with the support of modelling. </p>
Kokoelmat
- TUNICRIS-julkaisut [20517]