Robust Chemiresistive Behavior in Conductive Polymer/MOF Composites

Abstract: Metal‐organic frameworks (MOFs) are promising materials for gas sensing but are often limited to single‐use detection. A hybridization strategy is demonstrated synergistically deploying conductive MOFs (cMOFs) and conductive polymers (cPs) as two complementary mixed ionic‐electronic conductors in high‐performing stand‐alone chemiresistors. This work presents significant improvement in i) sensor recovery kinetics, ii) cycling stability, and iii) dynamic range at room temperature. The effect of hybridization across well‐studied cMOFs is demonstrated based on 2,3,6,7,10,11‐hexahydroxytriphenylene (HHTP) and 2,3,6,7,10,11‐hexaiminotriphenylene (HITP) ligands with varied metal nodes (Co, Cu, Ni). A comprehensive mechanistic study is conducted to relate energy band alignments at the heterojunctions between the MOFs and the polymer with sensing thermodynamics and binding kinetics. The findings reveal that hole enrichment of the cMOF component upon hybridization leads to selective enhancement in desorption kinetics, enabling significantly improved sensor recovery at room temperature, and thus long‐term response retention. This mechanism is further supported by density functional theory calculations on sorbate–analyte interactions. It is also found that alloying cPs and cMOFs enables facile thin film co‐processing and device integration, potentially unlocking the use of these hybrid conductors in diverse electronic applications.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
Robust Chemiresistive Behavior in Conductive Polymer/MOF Composites ; day:28 ; month:04 ; year:2024 ; extent:10
Advanced materials ; (28.04.2024) (gesamt 10)

Urheber
Roh, Heejung
Kim, Dong‐Ha
Cho, Yeongsu
Jo, Young‐Moo
del Alamo, Jesús A.
Kulik, Heather J.
Dincă, Mircea
Gumyusenge, Aristide

DOI
10.1002/adma.202312382
URN
urn:nbn:de:101:1-2404291434254.000358638843
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
14.08.2025, 10:51 MESZ

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Beteiligte

  • Roh, Heejung
  • Kim, Dong‐Ha
  • Cho, Yeongsu
  • Jo, Young‐Moo
  • del Alamo, Jesús A.
  • Kulik, Heather J.
  • Dincă, Mircea
  • Gumyusenge, Aristide

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