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The hierarchical structure of organic mixed ionic–electronic conductors and its evolution in water

Authors :
Tsarfati, Yael
Bustillo, Karen C.
Savitzky, Benjamin H.
Balhorn, Luke
Quill, Tyler J.
Marks, Adam
Donohue, Jennifer
Zeltmann, Steven E.
Takacs, Christopher J.
Giovannitti, Alexander
McCulloch, Iain
Ophus, Colin
Minor, Andrew M.
Salleo, Alberto
Source :
Nature Materials; January 2025, Vol. 24 Issue: 1 p101-108, 8p
Publication Year :
2025

Abstract

Polymeric organic mixed ionic–electronic conductors underpin several technologies in which their electrochemical properties are desirable. These properties, however, depend on the microstructure that develops in their aqueous operational environment. We investigated the structure of a model organic mixed ionic–electronic conductor across multiple length scales using cryogenic four-dimensional scanning transmission electron microscopy in both its dry and hydrated states. Four-dimensional scanning transmission electron microscopy allows us to identify the prevalent defects in the polymer crystalline regions and to analyse the liquid crystalline nature of the polymer. The orientation maps of the dry and hydrated polymers show that swelling-induced disorder is mostly localized in discrete regions, thereby largely preserving the liquid crystalline order. Therefore, the liquid crystalline mesostructure makes electronic transport robust to electrolyte ingress. This study demonstrates that cryogenic four-dimensional scanning transmission electron microscopy provides multiscale structural insights into complex, hierarchical structures such as polymeric organic mixed ionic–electronic conductors, even in their hydrated operating state.

Details

Language :
English
ISSN :
14761122 and 14764660
Volume :
24
Issue :
1
Database :
Supplemental Index
Journal :
Nature Materials
Publication Type :
Periodical
Accession number :
ejs67526843
Full Text :
https://doi.org/10.1038/s41563-024-02016-6