National Institute of Advanced Industrial Science and Technology (AIST), 2266-98 Anagahora, Shimoshidami, Moriyama, Nagoya, 463-8560, Japan.
Adv Sci (Weinh). 2022 Sep;9(27):e2202442. doi: 10.1002/advs.202202442. Epub 2022 Jul 15.
NiO nanosheets are synthesized in situ on gas sensor chips using a facile solvothermal method. These NiO nanosheets are then used as gas sensors to analyze allyl mercaptan (AM) gas, an exhaled biomarker of psychological stress. Additionally, MnO nanosheets are synthesized onto the surfaces of the NiO nanosheets to enhance the gas-sensing performance. The gas-sensing response of the NiO nanosheet sensor is higher than that of the MnO @NiO nanosheet sensor. The response value can reach 56.69, when the NiO nanosheet sensor detects 40 ppm AM gas. Interestingly, a faster response time (115 s) is obtained when the MnO @NiO nanosheet sensor is exposed to 40 ppm of AM gas. Moreover, the selectivity toward AM gas is about 17-37 times greater than those toward confounders. The mechanism of gas sensing and the factors contributing to the enhance gas response of the NiO and MnO @NiO nanosheets are discussed. The products of AM gas oxidized by the gas sensor are identified by gas chromatography-mass spectrometry (GC/MS). AM gas detection is an unprecedented application for semiconductor metal oxides. From a broader perspective, the developed sensors represent a new platform for the identification and monitoring of gases released by humans under psychological stress, which is increasing in modern life.
采用简便的溶剂热法,在气体传感器芯片上原位合成了 NiO 纳米片。然后,将这些 NiO 纳米片用作气体传感器,以分析丙烯硫醇(AM)气体,这是心理压力的一种呼出生物标志物。此外,还将 MnO 纳米片合成到 NiO 纳米片的表面上,以增强气体传感性能。与 MnO@NiO 纳米片传感器相比,NiO 纳米片传感器的气体传感响应更高。当 NiO 纳米片传感器检测到 40ppm 的 AM 气体时,其响应值可达到 56.69。有趣的是,当 MnO@NiO 纳米片传感器暴露于 40ppm 的 AM 气体时,其响应时间更快(115s)。此外,对 AM 气体的选择性大约是对干扰物的 17-37 倍。讨论了气体传感的机理以及导致 NiO 和 MnO@NiO 纳米片增强气体响应的因素。通过气相色谱-质谱联用仪(GC/MS)确定了气体传感器氧化 AM 气体的产物。AM 气体的检测是半导体金属氧化物的一项前所未有的应用。从更广泛的角度来看,开发的传感器代表了一种用于识别和监测现代生活中人类在心理压力下释放的气体的新平台。