Sensors lab, Advanced Membranes and Porous Materials Center, Computer, Electrical and Mathematical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Kingdom of Saudi Arabia.
Mater Horiz. 2021 Feb 1;8(2):525-537. doi: 10.1039/d0mh01420f. Epub 2020 Oct 19.
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 HS selectively. The hybrid heterostructure shows an unprecedented sensitivity (525% ppm) and high selectivity toward HS 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.
共轭聚合物 (CPs) 作为气体传感应用的未来发展方向之一,具有广阔的前景。然而,CPs 仍存在一些局限性,例如特异性差、对湿度敏感以及环境稳定性差等问题。在此,我们将 CP (PDVT-10) 和一种新报道的单体 [三(酮腙)] 的聚合物-单体杂化结构整合到有机场效应晶体管 (OFET) 平台中,以选择性地感应 HS。杂化异质结构表现出对 HS 气体前所未有的敏感性(525% ppm)和高选择性。此外,我们证明了 PDVT-10/三(酮腙) OFET 传感器具有最低的检测极限(1 ppb)、出色的环境稳定性(150 天后约 5%的电流衰减)、良好的响应-恢复行为以及出色的电性能和气体响应重复性。这项工作为在多种应用中纳入未来派气体传感器铺平了道路。