A Novel Multi‐Functional Thiophene‐Based Organic Cation as Passivation, Crystalline Orientation, and Organic Spacer Agent for Low‐Dimensional 3D/1D Perovskite Solar Cells

Author:

Semerci Ali1ORCID,Buyruk Ali1ORCID,Emin Saim2ORCID,Hooijer Rik1ORCID,Kovacheva Daniela3ORCID,Mayer Peter1ORCID,Reus Manuel A.4ORCID,Blätte Dominic1ORCID,Günther Marcella1ORCID,Hartmann Nicolai F.5ORCID,Lotfi Soroush6ORCID,Hofmann Jan P.6ORCID,Müller‐Buschbaum Peter47ORCID,Bein Thomas1ORCID,Ameri Tayebeh18ORCID

Affiliation:

1. Department of Chemistry and Center for NanoScience (CeNS) Ludwig‐Maximilians‐Universität München Butenandtstrasse 5–13 (E) 81377 Munich Germany

2. Materials Research Laboratory University of Nova Gorica Vipavska 13c Ajdovščina 5270 Slovenia

3. Institute of General and Inorganic Chemistry Bulgarian Academy of Sciences Sofia 1113 Bulgaria

4. TUM School of Natural Sciences Department of Physics Chair for Functional Materials Technical University of Munich James‐Franck‐Str. 1 85748 Garching Germany

5. Attocube systems AG Nanoscale Analytics neaspec Eglfinger Weg 2 85540 Haar Germany

6. Surface Science Laboratory Department of Materials and Earth Sciences Technical University of Darmstadt Otto‐Berndt‐Str. 3 64287 Darmstadt Germany

7. Heinz Maier‐Leibnitz‐Zentrum (MLZ) Technical University of Munich Lichtenbergstr. 1 85748 Garching Germany

8. Institute for Materials and Processes, Chemical Engineering University of Edinburgh Sanderson Building, Robert Stevenson Road Edinburgh Scotland EH9 3FB United Kingdom

Abstract

AbstractRecently, the mixed‐dimensional (3D/2D or 3D/1D) perovskite solar cells using small organic spacers have attracted interest due to their outstanding long‐term stability. Here, a new type of thiophene‐based organic cation 2‐(thiophene‐2yl‐)pyridine‐1‐ium iodide (ThPyI), which is used to fabricate mixed‐dimensional 3D/1D perovskite solar cells, is presented. The ThPyI‐based 1D perovskitoid is applied as a passivator on top of a 3D methyl ammonium lead iodide (MAPI) to fabricate surface‐passivated 3D/1D perovskite films or added alone into the 3D perovskite precursor to generate bulk‐passivated 3D MAPI. The 1D perovskitoid acts as a passivating agent at the grain boundaries of surface‐passivated 3D/1D, which improves the power conversion efficiency (PCE) of the solar cells. Grazing incidence wide‐angle X‐ray scattering (GIWAXS) studies confirm that ThPyI triggers the preferential orientation of the bulk MAPI slabs, which is essential to enhance charge transport. Champion bulk‐passivated 3D and surface‐passivated 3D/1D devices yield 14.10% and 19.60% PCE, respectively. The bulk‐passivated 3D offers favorable stability, with 84% PCE retained after 2000 h without encapsulation. This study brings a new perspective to the design of organic spacers having a different binding motif and a passivation strategy to mitigate the impact of defects in hybrid 3D/1D perovskite solar cells.

Funder

Deutsche Forschungsgemeinschaft

Javna Agencija za Raziskovalno Dejavnost RS

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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