Tytuł pozycji:
Nanoscale Phase Segregation in Supramolecular π-Templating for Hybrid Perovskite Photovoltaics from NMR Crystallography
- Tytuł:
-
Nanoscale Phase Segregation in Supramolecular π-Templating for Hybrid Perovskite Photovoltaics from NMR Crystallography
- Autorzy:
-
Ahlawat, Paramvir
Carbone, Loï C.
Merten, Lena
Lewiński, Janusz
Emsley, Lyndon
Runjhun, Rashmi
Gershoni-Porannex, Renana
Milić, Jovana V.
Mishra, Aditya
Rothlisberger, Ursula
Grätzel, Michael
Mladenović, Marko
Jahanbakhshi, Farzaneh
Kubicki, Dominik J.
Carlsen, Brian I.
Cordova, Manuel
Hinderhofer, Alexander
Nakamura, Toru
Hope, Michael A.
Zakeeruddin, Shaik M.
Schneeberger, Thomas
Liu, Yuhang
Schreiber, Frank
Hagfeldt, Anders
- Data publikacji:
-
2021
- Wydawca:
-
American Chemical Society
- Język:
-
angielski
- ISBN, ISSN:
-
15205126
- Linki:
-
https://open.icm.edu.pl/handle/123456789/21187  Link otwiera się w nowym oknie
- Dostawca treści:
-
Repozytorium Centrum Otwartej Nauki
-
Przejdź do źródła  Link otwiera się w nowym oknie
The use of layered perovskites is an important strategy to improve the stability of hybrid perovskite materials and their optoelectronic devices. However, tailoring their properties requires accurate structure determination at the atomic scale, which is a challenge for conventional diffraction-based techniques. We demonstrate the use of nuclear magnetic resonance (NMR) crystallography in determining the structure of layered hybrid perovskites for a mixed-spacer model composed of 2-phenylethylammonium (PEA+) and 2-(perfluorophenyl)ethylammonium (FEA+) moieties, revealing nanoscale phase segregation. Moreover, we illustrate the application of this structure in perovskite solar cells with power conversion efficiencies that exceed 21%, accompanied by enhanced operational stability.