2023
DOI: 10.1016/j.mssp.2022.107255
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A novel approach for ultrafast and highly sensitive carbon monoxide gas sensor based on PEDOT/GO nanocomposite

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Cited by 9 publications
(3 citation statements)
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“…The authors suggested that the performance was due to the in situ production of atomic, ionic, and radical oxygen sites, which play a relevant role in both the adsorption of CO and electronic density rearmament. Furthermore, GRMs can be functionalized with polymers, as reported by Farea and co-workers [59,60] and by Mohammed et al [61], or by metal organic frameworks boosting the overall CO sensing performance, as reported by More et al [62].…”
Section: Pristine Graphene and Grm Sensing Performance In Electrochem...mentioning
confidence: 91%
“…The authors suggested that the performance was due to the in situ production of atomic, ionic, and radical oxygen sites, which play a relevant role in both the adsorption of CO and electronic density rearmament. Furthermore, GRMs can be functionalized with polymers, as reported by Farea and co-workers [59,60] and by Mohammed et al [61], or by metal organic frameworks boosting the overall CO sensing performance, as reported by More et al [62].…”
Section: Pristine Graphene and Grm Sensing Performance In Electrochem...mentioning
confidence: 91%
“…250 The adsorption and interaction between PEDOT and gas molecules and changes in the external environment such as temperature and humidity will also change its electron transmission, thereby realizing gas detection. 251 Resistive sensors generally have a faster response time. Lee et al 252 prepared a sensitive, stretchable, and sustainable conductive cellulose nanocrystal composite for human motion detection (Fig.…”
Section: Sensorsmentioning
confidence: 99%
“…250 The adsorption and interaction between PEDOT and gas molecules and changes in the external environment such as temperature and humidity will also change its electron transmission, thereby realizing gas detection. 251…”
Section: Applicationsmentioning
confidence: 99%