Publication:

Coordination Chemistry as a Universal Strategy for a Controlled Perovskite Crystallization

cris.lastimport.scopus

2024-09-04T09:25:19Z

cris.legacyId

304683

cris.virtual.sciperId

286005

cris.virtualsource.author-scopus

ddc346c8-6dd4-409f-ae01-e326d809423a

cris.virtualsource.department

ddc346c8-6dd4-409f-ae01-e326d809423a

cris.virtualsource.orcid

ddc346c8-6dd4-409f-ae01-e326d809423a

cris.virtualsource.rid

ddc346c8-6dd4-409f-ae01-e326d809423a

cris.virtualsource.sciperId

ddc346c8-6dd4-409f-ae01-e326d809423a

datacite.rights

metadata-only

dc.contributor.author

Zuo, Weiwei

dc.contributor.author

Byranvand, Mahdi Malekshahi

dc.contributor.author

Kodalle, Tim

dc.contributor.author

Zohdi, Mohammadreza

dc.contributor.author

Lim, Jaekeun

dc.contributor.author

Carlsen, Brian

dc.contributor.author

Friedlmeier, Theresa Magorian

dc.contributor.author

Kot, Malgorzata

dc.contributor.author

Das, Chittaranjan

dc.contributor.author

Flege, Jan Ingo

dc.contributor.author

Zong, Wansheng

dc.contributor.author

Abate, Antonio

dc.contributor.author

Sutter-Fella, Carolin M.

dc.contributor.author

Li, Meng

dc.contributor.author

Saliba, Michael

dc.date.accessioned

2023-08-28T02:46:35

dc.date.available

2023-08-28T02:46:35

dc.date.created

2023-08-28

dc.date.issued

2023-08-09

dc.date.modified

2025-02-19T15:11:55.509120Z

dc.description.abstract

The most efficient and stable perovskite solar cells (PSCs) are made from a complex mixture of precursors. Typically, to then form a thin film, an extreme oversaturation of the perovskite precursor is initiated to trigger nucleation sites, e.g., by vacuum, an airstream, or a so-called antisolvent. Unfortunately, most oversaturation triggers do not expel the lingering (and highly coordinating) dimethyl sulfoxide (DMSO), which is used as a precursor solvent, from the thin films; this detrimentally affects long-term stability. In this work, (the green) dimethyl sulfide (DMS) is introduced as a novel nucleation trigger for perovskite films combining, uniquely, high coordination and high vapor pressure. This gives DMS a universal scope: DMS replaces other solvents by coordinating more strongly and removes itself once the film formation is finished. To demonstrate this novel coordination chemistry approach, MAPbI(3) PSCs are processed, typically dissolved in hard-to-remove (and green) DMSO achieving 21.6% efficiency, among the highest reported efficiencies for this system. To confirm the universality of the strategy, DMS is tested for FAPbI(3) as another composition, which shows higher efficiency of 23.5% compared to 20.9% for a device fabricated with chlorobenzene. This work provides a universal strategy to control perovskite crystallization using coordination chemistry, heralding the revival of perovskite compositions with pure DMSO.

dc.identifier.doi

10.1002/adma.202302889

dc.identifier.isi

WOS:001044605600001

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/200297

dc.publisher

Wiley-V C H Verlag Gmbh

dc.publisher.place

Weinheim

dc.relation.issn

1521-4095

dc.relation.issn

0935-9648

dc.relation.journal

Advanced Materials

dc.source

WoS

dc.subject

Chemistry, Multidisciplinary

dc.subject

Chemistry, Physical

dc.subject

Nanoscience & Nanotechnology

dc.subject

Materials Science, Multidisciplinary

dc.subject

Physics, Applied

dc.subject

Physics, Condensed Matter

dc.subject

Chemistry

dc.subject

Science & Technology - Other Topics

dc.subject

Materials Science

dc.subject

Physics

dc.subject

coordination chemistry

dc.subject

green solvents

dc.subject

perovskite crystallization

dc.subject

electronic transport-properties

dc.subject

high-efficiency

dc.subject

solar-cells

dc.subject

hysteresis

dc.title

Coordination Chemistry as a Universal Strategy for a Controlled Perovskite Crystallization

dc.type

text::journal::journal article::research article

dspace.entity.type

Publication

dspace.legacy.oai-identifier

oai:infoscience.epfl.ch:304683

epfl.curator.email

jules.sachot-durette@epfl.ch

epfl.lastmodified.email

sara.cantile@epfl.ch

epfl.legacy.itemtype

Journal Articles

epfl.legacy.submissionform

ARTICLE

epfl.peerreviewed

REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

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