College of Engineering and Technology, Southwest University, Chongqing 400715, P. R. China.
ACS Sens. 2024 Mar 22;9(3):1188-1198. doi: 10.1021/acssensors.3c01963. Epub 2024 Feb 15.
In this study, a high-precision CuO/TiO/MXene ethanol sensor operating at room temperature was prepared. The sensor exhibits excellent response value (95% @1 ppm ethanol), extremely low detection limit (0.3 ppm), fast response/recovery time (16/13 s), and remarkable long-term stability for trace detection of ethanol gas at room temperature, attributed to the p-n heterojunction formed by CuO and TiO, as well as the rich functional groups and large specific surface area of MXene. Furthermore, a high-performance triboelectric nanogenerator (SMS-TENG) was developed through the introduction of the silicone/Mxene@silicone dual dielectric layer as the triboelectric layer, which improves the charge storage capacity of the dielectric layer and greatly enhances the output performance of the TENG. At the optimal doping ratio, the open-circuit voltage of the SMS-TENG can reach 1160 V, which is sufficient to light 720 LEDs. By combining the sensor and SMS-TENG, the resistive response of ethanol sensing is converted to a voltage response, which amplifies the response value up to 15.8 times. Finally, the designed SMS-TENGs are expected to be arrayed on an inspection robot as energy supply and combined with the CuO/TiO/Mxene ethanol sensor to build a self-powered ethanol detection alarm system, endowing the inspection robot with the capability of self-powered ethanol detection at ppb level. This work provides an effective pathway for the intelligence of ethanol detection.
在这项研究中,制备了一种工作在室温下的高精度 CuO/TiO/MXene 乙醇传感器。该传感器对乙醇气体表现出优异的响应值(1 ppm 乙醇时为 95%)、极低的检测限(0.3 ppm)、快速的响应/恢复时间(16/13 s)以及卓越的长期稳定性,这归因于 CuO 和 TiO 形成的 p-n 异质结,以及 MXene 丰富的官能团和大的比表面积。此外,通过引入硅脂/Mxene@硅脂双层介电层作为摩擦电层,开发出了高性能的摩擦纳米发电机(SMS-TENG),这提高了介电层的电荷存储能力,并极大地增强了 TENG 的输出性能。在最佳掺杂比下,SMS-TENG 的开路电压可达 1160 V,足以点亮 720 个 LED。通过将传感器和 SMS-TENG 结合,将乙醇传感的电阻响应转换为电压响应,将响应值放大了 15.8 倍。最后,设计的 SMS-TENG 有望被排列在检查机器人上作为能量供应,并与 CuO/TiO/MXene 乙醇传感器结合,构建一个自供电的乙醇检测报警系统,使检查机器人具有检测 ppb 级乙醇的能力。这项工作为乙醇检测的智能化提供了一条有效的途径。