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Screening of excitons by organic cations in quasi-two-dimensional organic–inorganic lead-halide perovskites

Abstract:
Interlayer organic cations in quasi-two-dimensional halide perovskites are a versatile tuning vehicle for the optoelectronic properties of these complex systems, but chemical intuition for this design route is yet to be established. Here, we use density functional theory, the GW approximation, and the Bethe-Salpeter equation approach to understand the contribution of the organic cation to the quasiparticle band gap and exciton binding energy of layered perovskites. We show that organic cations in quasi-two-dimensional perovskites contribute significantly to the dielectric screening in these systems, countering quantum confinement effects on the quasiparticle band gap and the exciton binding energy. Using a simple electrostatics model inspired by parallel-plate capacitors, we decouple the organic cation and inorganic layer contributions to the effective dielectric constants and show that dielectric properties of layered perovskites are broadly tunable via the interlayer cation, providing a direct means of tuning photophysical properties for a variety of applications.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1021/acs.nanolett.2c01306

Authors


More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Condensed Matter Physics
Oxford college:
Trinity College
Role:
Author
ORCID:
0000-0003-2925-172X
More by this author
Role:
Author
ORCID:
0000-0003-3067-6987


Publisher:
American Chemical Society
Journal:
Nano Letters More from this journal
Volume:
22
Issue:
12
Pages:
4870–4878
Publication date:
2022-06-09
Acceptance date:
2022-05-05
DOI:
EISSN:
1530-6992
ISSN:
1530-6984
Pmid:
35679538


Language:
English
Keywords:
Pubs id:
1263759
Local pid:
pubs:1263759
Deposit date:
2022-07-12

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