Abstract
Conjugated polymers (CPs) are emerging as part of a promising future for gas-sensing applications. However, some of their limitations, such as poor specificity, humidity sensitivity and poor ambient stability, remain persistent. Herein, a novel combination of a polymer-monomer heterostructure, derived from a CP (PDVT-10) and a newly reported monomer [tris(keto-hydrazone)] has been integrated in an organic field-effect transistor (OFET) platform to sense H2S selectively. The hybrid heterostructure shows an unprecedented sensitivity (525% ppm-1) and high selectivity toward H2S gas. In addition, we demonstrated that the PDVT-10/tris(keto-hydrazone) OFET sensor has the lowest limit of detection (1 ppb), excellent ambient stability (∼5% current degradation after 150 days), good response-recovery behavior, and exceptional electrical behavior and gas response reproducibility. This work can help pave the way to incorporate futuristic gas sensors in a multitude of applications.
Cite
CITATION STYLE
Yuvaraja, S., Bhyranalyar, V. N., Bhat, S. A., Surya, S. G., Yelamaggad, C. V., & Salama, K. N. (2021). A highly selective electron affinity facilitated H2S sensor: The marriage of tris(keto-hydrazone) and an organic field-effect transistor. Materials Horizons, 8(2), 525–537. https://doi.org/10.1039/d0mh01420f
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.