Germanium coated silicon nanowires as human respiratory sensing device

E. Fakhri, M. T. Sultan, A. Manolescu, S. Ingvarsson, H. Svavarsson
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引用次数: 1

Abstract

We report on germanium coated silicon nanowires structures synthesized with metal assisted chemical etching and qualify their functionality as human respiratory sensor. The sensors were made from p-type single-crystalline (100) silicon wafers using a silver catalyzed top-down etching, afterwards coated by 50 nm germanium thin layer using a magnetron sputtering. The germanium post-treatment was performed by rapid thermal annealing at 450 and 700° C. The sensors were characterized by X-ray diffraction diffractogram and scanning electron microscopy. It is demonstrated that the sensors are highly sensitive as human breath detectors, with rapid response and frequency detectability. They are also shown to be a good candidate for human respiratory disease diagnoses.
锗包覆硅纳米线作为人体呼吸传感装置
本文报道了用金属辅助化学蚀刻法合成的锗包覆硅纳米线结构,并确定了其作为人体呼吸传感器的功能。传感器由p型单晶(100)硅片采用银催化自顶向下蚀刻制成,然后用磁控溅射涂覆50 nm锗薄层。锗后处理分别在450℃和700℃下进行快速热退火。传感器采用x射线衍射图和扫描电镜进行表征。实验证明,该传感器具有人体呼吸检测器的高灵敏度,具有快速响应和频率可检测性。它们也被证明是人类呼吸道疾病诊断的良好候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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