Faculty of Engineering, Institute for Materials Science, Christian-Albrechts Universität zu Kiel, Kiel University, Kaiserstr. 2, D-24143, Kiel, Germany.
Department of Microelectronics and Biomedical Engineering, Technical University of Moldova, 168 Stefan cel Mare Av., MD-2004, Chisinau, Republic of Moldova.
Small. 2017 Apr;13(16). doi: 10.1002/smll.201602868. Epub 2017 Feb 10.
A composed morphology of iron oxide microstructures covered with very thin nanowires (NWs) with diameter of 15-50 nm has been presented. By oxidizing metallic Fe microparticles at 255 °C for 12 and 24 h, dense iron oxide NW networks bridging prepatterned Au/Cr pads are obtained. X-ray photoelectron spectroscopy studies reveal formation of α-Fe O and Fe O on the surface and it is confirmed by detailed high-resolution transmission electron microscopy and selected area electron diffraction (SAED) investigations that NWs are single phase α-Fe O and some domains of single phase Fe O . Localized synthesis of such nano- and microparticles directly on sensor platform/structure at 255 °C for 24 h and reoxidation at 650 °C for 0.2-2 h, yield in highly performance and reliable detection of acetone vapor with fast response and recovery times. First nanosensors on a single α-Fe O nanowire are fabricated and studied showing excellent performances and an increase in acetone response by decrease of their diameter was developed. The facile technological approach enables this nanomaterial as candidate for a range of applications in the field of nanoelectronics such as nanosensors and biomedicine devices, especially for breath analysis in the treatment of diabetes patients.
呈现了一种由非常细的纳米线(直径为 15-50nm)覆盖的氧化铁微结构的组合形态。通过在 255°C 下将金属 Fe 微颗粒氧化 12 和 24 小时,可以获得密集的氧化铁 NW 网络,该网络桥接预先图案化的 Au/Cr 衬垫。X 射线光电子能谱研究表明,在表面形成了α-FeO 和 Fe2O3,通过详细的高分辨率透射电子显微镜和选区电子衍射(SAED)研究证实,NW 是单相α-FeO,并且某些单相 Fe2O3的畴。在 255°C 下直接在传感器平台/结构上进行局部合成,24 小时后在 650°C 下再氧化 0.2-2 小时,可实现对丙酮蒸气的高灵敏度和可靠检测,具有快速的响应和恢复时间。首次在单个α-FeO 纳米线上制造和研究了纳米传感器,表现出出色的性能,并通过减小其直径来提高丙酮的响应。这种简便的技术方法使这种纳米材料成为纳米电子学领域(如纳米传感器和生物医学设备)的一系列应用的候选者,特别是在治疗糖尿病患者的呼吸分析方面。