Molecular-level electrochemical doping for fine discrimination of volatile organic compounds in organic chemiresistors

Sooncheol Kwon, Yusin Pak, Bongseong Kim, Byoungwook Park, Jehan Kim, Geunjin Kim, Yong Ryun Jo, Saurav Limbu, Katherine Stewart, Hyeonghun Kim, Bong Joong Kim, Soo Young Jang, Hongkyu Kang, Jung Wook Min, Ji Seon Kim, Gun Young Jung, Kwanghee Lee

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Printable organic sensors fabricated from solution-processed π-conjugated polymers (π-CPs) are promising candidates to detect volatile organic compounds (VOCs) due to the intriguing physical, chemical and electronic properties of π-CPs. These devices, often termed organic chemiresistors, require good sensing capabilities to transduce stimuli from specific VOCs at low concentrations into analytical electric signals. However, discriminating such VOCs using organic chemiresistors has proven very challenging. Herein, we report that the molecular-level electrochemical doping of π-CPs with solid-state ionic liquids (SILs) significantly improves their electrical conductivity (∼10-1 S cm-1) and selective VOC interactions, which can be manipulated through different π-CPs:SIL blend ratios. These characteristics enable the fine discrimination of VOCs at concentrations in the parts-per-billion (ppb) range under low power consumption (
Original languageEnglish (US)
Pages (from-to)16884-16891
Number of pages8
JournalJournal of Materials Chemistry A
Volume8
Issue number33
DOIs
StatePublished - Jul 27 2020

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