Tian Xu, Cui Xiuxiu, Xiao Yawei, Chen Ting, Xiao Xuechun, Wang Yude
National Center for International Research on Photoelectric and Energy Materials, School of Materials and Energy, Yunnan University, Kunming6500504, People's Republic of China.
Institute of Materials Science & Devices, School of Materials Science and Engineering, Suzhou University of Science and Technology, Suzhou215009, People's Republic of China.
ACS Appl Mater Interfaces. 2023 Feb 10. doi: 10.1021/acsami.2c20299.
A Pt/MoS/polyaniline (Pt/MoS/PANI) nanocomposite is successfully synthesized by the hydrothermal process combined with the polymerization method, and then Pt particles are decorated on its surface. The Pt/MoS/PANI nanocomposite is deposited on a flexible Au-interdigitated electrode of a polyimide (PI) film. The flexible sensor exhibits a higher response value and fast response/recovery time to NH at room temperature (RT). It results in 2.32-fold and 1.13-fold improvement in the gas-sensing response toward 50 ppm NH compared to those of PANI and MoS/PANI-based gas sensors. The detection limit is 250 ppb. The enhancement sensing mechanisms are attributed to the p-n heterojunction and the Schottky barrier between the three components, which has been confirmed by the current-voltage (-) curves. A satisfactory selectivity to NH against trimethylamine (TMA) and triethylamine (TEA) is obtained according to density functional theory (DFT), Bader's analysis, and differential charge density to illustrate the adsorption behavior and charge transfer of gas molecules on the surface of the sensing materials. The sensor retains the excellent sensing response value even under high relative humidity and sensing stability at higher bending angle/numbers to NH gas. Hence, Pt/MoS/PANI can be regarded as a promising sensing material for high-performance NH detection at room temperature applied in flexible wearable electronics.
通过水热法结合聚合方法成功合成了一种铂/二硫化钼/聚苯胺(Pt/MoS/PANI)纳米复合材料,然后在其表面修饰了铂颗粒。将Pt/MoS/PANI纳米复合材料沉积在聚酰亚胺(PI)薄膜的柔性金叉指电极上。该柔性传感器在室温下对氨气表现出更高的响应值和快速的响应/恢复时间。与基于聚苯胺和MoS/PANI的气体传感器相比,它对50 ppm氨气的气敏响应提高了2.32倍和1.13倍。检测限为250 ppb。增强的传感机制归因于三种组分之间的p-n异质结和肖特基势垒,这已通过电流-电压(I-V)曲线得到证实。根据密度泛函理论(DFT)、巴德分析和差分电荷密度,获得了对氨气相对于三甲胺(TMA)和三乙胺(TEA)的令人满意的选择性,以说明气体分子在传感材料表面的吸附行为和电荷转移。即使在高相对湿度下,该传感器对氨气仍保持优异的传感响应值,并且在较高弯曲角度/次数下对氨气具有传感稳定性。因此,Pt/MoS/PANI可被视为一种有前途的传感材料,用于在室温下应用于柔性可穿戴电子设备中的高性能氨气检测。