Saratov State Technical University, Saratov 410054, Russia.
ACS Nano. 2010 Aug 24;4(8):4487-94. doi: 10.1021/nn100435h.
Electronic instruments mimicking the mammalian olfactory system are often referred to as "electronic noses" (E-noses). Thanks to recent nanotechnology breakthroughs the fabrication of mesoscopic and even nanoscopic E-noses is now feasible in the size domain where miniaturization of the microanalytical systems encounters principal limitations. Here we describe probably the simplest and yet fully functioning E-nose made of an individual single-crystal metal oxide quasi-1D nanobelt. The nanobelt was indexed with a number of electrodes in a way that each segment of the nanobelt between two electrodes defines an individual sensing elemental "receptor" of the array. The required diversity of the sensing elements is "encoded" in the nanobelt morphology via longitudinal width variations of the nanobelt realized during its growth and via functionalization of some of the segments with Pd catalyst. The proposed approach represents the combined bottom-up/top-down technologically viable route to develop robust and sensitive analytical systems scalable down to submicrometer dimensions.
电子仪器模拟哺乳动物嗅觉系统通常被称为“电子鼻”(E-nose)。由于最近的纳米技术突破,现在可以在微型分析系统遇到主要限制的尺寸范围内制造介观甚至纳米级的 E-nose。在这里,我们描述了一种可能是最简单但功能齐全的 E-nose,它由单个单晶金属氧化物准一维纳米带制成。纳米带与多个电极进行索引,方式是在两个电极之间的纳米带的每个部分定义了阵列中单个感应元素“受体”。通过在生长过程中实现纳米带的纵向宽度变化以及通过用 Pd 催化剂功能化一些部分,在纳米带形态中“编码”所需的感应元件的多样性。所提出的方法代表了一种结合自下而上/自上而下的技术上可行的方法,可开发出具有鲁棒性和灵敏度的可扩展到亚微米尺寸的分析系统。