DOAJ Open Access 2022

Resistive Chemosensors for the Detection of CO Based on Conducting Polymers and Carbon Nanocomposites: A Review

Mihaela Savin Carmen-Marinela Mihailescu Carmen Moldovan Alexandru Grigoroiu Ion Ion +1 lainnya

Abstrak

Nanocomposite materials have seen increased adoption in a wide range of applications, with toxic gas detection, such as carbon monoxide (CO), being of particular interest for this review. Such sensors are usually characterized by the presence of CO absorption sites in their structures, with the Langmuir reaction model offering a good description of the reaction mechanism involved in capturing the gas. Among the reviewed sensors, those that combined polymers with carbonaceous materials showed improvements in their analytical parameters such as increased sensitivities, wider dynamic ranges, and faster response times. Moreover, it was observed that the CO reaction mechanism can differ when measured in mixtures with other gases as opposed to when it is detected in isolation, which leads to lower sensitivities to the target gas. To better understand such changes, we offer a complete description of carbon nanostructure-based chemosensors for the detection of CO from the sensing mechanism of each material to the water solution strategies for the composite nanomaterials and the choice of morphology for enhancing a layers’ conductivity. Then, a series of state-of-the-art resistive chemosensors that make use of nanocomposite materials is analyzed, with performance being assessed based on their detection range and sensitivity.

Topik & Kata Kunci

Penulis (6)

M

Mihaela Savin

C

Carmen-Marinela Mihailescu

C

Carmen Moldovan

A

Alexandru Grigoroiu

I

Ion Ion

A

Alina Catrinel Ion

Format Sitasi

Savin, M., Mihailescu, C., Moldovan, C., Grigoroiu, A., Ion, I., Ion, A.C. (2022). Resistive Chemosensors for the Detection of CO Based on Conducting Polymers and Carbon Nanocomposites: A Review. https://doi.org/10.3390/molecules27030821

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Informasi Jurnal
Tahun Terbit
2022
Sumber Database
DOAJ
DOI
10.3390/molecules27030821
Akses
Open Access ✓