Low level NO2 detection under humid background and associated sensing mechanism for mesoporous SnO2

被引:29
|
作者
Stanoiu, Adelina [1 ]
Somacescu, Simona [2 ]
Calderon-Moreno, Jose Maria [2 ]
Teodorescu, Valentin Serban [1 ]
Florea, Ovidiu Gabriel [1 ]
Sackmann, Andre [3 ]
Simion, Cristian Eugen [1 ]
机构
[1] Natl Inst Mat Phys, Atomistilor 105Bis,POB MG-7, Bucharest 077125, Romania
[2] Romanian Acad, Murgulescu Inst Phys Chem, Spl Independentei 202, Bucharest 060021, Romania
[3] Univ Tubingen, Inst Phys & Theoret Chem, AG Weimar, Morgenstelle 15, D-72076 Tubingen, Germany
关键词
Mesoporous SnO2; Surface hydroxylation; Electrical resistance and work function changes; Sensing mechanism; ENHANCED RESPONSE; RAMAN-SPECTRUM; SENSOR; NANOPARTICLES; PERFORMANCE; OXIDES;
D O I
10.1016/j.snb.2016.02.137
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Mesoporous SnO2 prepared by a hydrothermal synthesis route assisted by the ionic surfactant Cetyltrimethylammonium bromide, has rutile-type tetragonal symmetry, small homogeneous nanocrystallite size of similar to 4 nm and good thermal stability. Porosity analysis revealed high surface area similar to 127 m(2)/g and a narrow pore size distribution, with an average pore diameter similar to 4 nm. The mesoporous structure is likewise advantageous towards enhancing the surface reactivity and subsequent gas sensing performances. The role played by the surface hydroxylation on the NO2 sensing mechanism was discussed with respect to the associated photoelectron spectral components. Under humid air, associated with the in-field conditions, the highest sensitivity was attained at 150 degrees C, were the sensor signal towards NO2 is 4 times higher than the one recorded in dry air. This feature has been experimentally demonstrated by simultaneous electrical resistance and work function changes measurements conducted in the range of 400-5000 ppb NO2. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:166 / 174
页数:9
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