School of Health Science and Engineering, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai 200093, China.
ACS Sens. 2024 Mar 22;9(3):1447-1457. doi: 10.1021/acssensors.3c02558. Epub 2024 Feb 27.
Developing high-performance chemiresistive gas sensors with mechanical compliance for environmental or health-related biomarker monitoring has recently drawn increasing research attention. Among them, two-dimensional MXene materials hold great potential for room-temperature hazardous gas (e.g., NH) monitoring regardless of the complicated fabrication process, insufficient 2D/3D flexibilities, and poor environmental sustainability. Herein, a TiCT MXene/gelatin ink was developed for patterning electrodes through a facile spray coating. Particularly, the patterned TiCT-based coating exhibited good adhesion on the paper substrate against repeated peeling-off and excellent mechanical flexibility against 1000 cyclic stretching. The porous morphology of the coating facilitated the NH sensing ability. As a result, the 2D kirigami-shaped NH sensor exhibited a good response of 7% to 50 ppm of NH with detectable concentrations ranging from 5-500 ppm, decent selectivity over interferences, etc., which could be well-maintained even at 50% stretched state. In addition, with the help of mechanically guided compressive buckling, 3D mesostructured MXene origamis could be obtained, holding promise for detecting the coming direction and height distribution of hazardous gas, e.g., the NH. More importantly, the as-fabricated MXene/gelatin origami paper could be fully degraded in PBS/HO/cellulase solution within 19 days, demonstrating its potential as a high-performance, shape morphable, and environmentally friendly wearable gas sensor.
开发具有机械顺应性的高性能电阻式气体传感器,用于环境或与健康相关的生物标志物监测,最近引起了越来越多的研究关注。二维 MXene 材料在室温下监测危险气体(例如 NH)方面具有很大的潜力,尽管其制造工艺复杂、2D/3D 柔韧性不足且环境可持续性差。在此,通过简单的喷涂方法开发了一种用于图案化电极的 TiCT MXene/明胶墨水。特别地,图案化的基于 TiCT 的涂层在反复剥离时表现出良好的附着力,在 1000 次循环拉伸时表现出出色的机械柔韧性。涂层的多孔形态有利于 NH 传感性能。结果,二维折纸形状的 NH 传感器对 50 ppm 至 500 ppm 的 NH 具有良好的响应,检测浓度范围为 5-500 ppm,对干扰具有良好的选择性等,即使在 50%拉伸状态下也能保持良好。此外,借助机械引导的压缩屈曲,可以获得 3D 介孔结构的 MXene 折纸,可以用于检测危险气体(例如 NH)的到来方向和高度分布。更重要的是,所制造的 MXene/明胶 origami 纸可以在 19 天内在 PBS/HO/纤维素酶溶液中完全降解,展示了其作为高性能、形状可变形和环保可穿戴气体传感器的潜力。