Sysoev Victor V, Goschnick Joachim, Schneider Thomas, Strelcov Evghenii, Kolmakov Andrei
Department of Physics, Saratov State Technical University, Saratov 410054, Russia.
Nano Lett. 2007 Oct;7(10):3182-8. doi: 10.1021/nl071815+.
Fabrication, characterization, and tests of the practical gradient microarray electronic nose with SnO(2) nanowire gas-sensing elements are reported. This novel device has demonstrated an excellent performance as a gas sensor and e-nose system capable of promptly detecting and reliably discriminating between several reducing gases in air at a ppb level of concentration. It has been found that, in addition to the temperature gradient across the nanowire layer, the density and morphological inhomogeneities of nanowire mats define the discriminating power of the electronic nose.
报道了具有SnO₂纳米线气敏元件的实用梯度微阵列电子鼻的制备、表征及测试。这种新型器件作为一种气体传感器和电子鼻系统表现出优异的性能,能够在浓度为十亿分之一水平下迅速检测并可靠区分空气中的几种还原性气体。研究发现,除了纳米线层上的温度梯度外,纳米线垫的密度和形态不均匀性也决定了电子鼻的辨别能力。