International Training Institute for Materials Science, Hanoi University of Science and Technology, No. 1, Dai Co Viet, Hanoi, Viet Nam.
Talanta. 2012 Jan 15;88:152-9. doi: 10.1016/j.talanta.2011.10.024. Epub 2011 Oct 25.
In spite of the technical important of monitoring CO(2) gas by using a semiconductor-type gas sensor, a good sensitive and selective semiconductor CO(2) sensor has been not realized due to the rather unreactive toward CO(2) of conventional semiconductor metal oxides. In this work, a novel semiconductor CO(2) sensor was developed by functionalizing SnO(2) nanowires (NWs) with LaOCl, which was obtained by heat-treating the SnO(2) NWs coating with LaCl(3) aqueous solution at a temperature range of 500-700°C. The bare SnO(2) NWs and LaOCl-SnO(2) NWs sensors were characterized with CO(2) (250-4,000 ppm) and interference gases (100 ppm CO, 100 ppm H(2), 250 ppm LPG, 10 ppm NO(2) and 20 ppm NH(3)) at different operating temperatures for comparison. The SnO(2) NWs sensors functionalized with different concentrations of LaCl(3) solution were also examined to find optimized values. Comparative gas sensing results reveal that LaOCl-SnO(2) NWs sensors exhibit much higher response, shorter response-recovery and better selectivity in detecting CO(2) gas at 400°C operating temperature than the bare SnO(2) NWs sensors. This finding indicates that the functionalizing with LaOCl greatly improves the CO(2) response of SnO(2) NWs-based sensor, which is attributed to (i) p-n junction formation of LaOCl (p-type) and SnO(2) nanowires (n-type) that led to the extension of electron depletion and (ii) the favorable catalytic effect of LaOCl to CO(2) gas.
尽管使用半导体型气体传感器监测 CO(2)气体具有技术重要性,但由于常规半导体金属氧化物对 CO(2)的反应性较差,因此尚未实现良好的敏感和选择性半导体 CO(2)传感器。在这项工作中,通过用 LaOCl 功能化 SnO(2)纳米线 (NWs) 开发了一种新型半导体 CO(2)传感器,该传感器是通过将 SnO(2) NWs 涂层在 500-700°C 的温度范围内用 LaCl(3)水溶液热处理而获得的。裸 SnO(2) NWs 和 LaOCl-SnO(2) NWs 传感器分别用 CO(2)(250-4000 ppm)和干扰气体(100 ppm CO、100 ppm H(2)、250 ppm LPG、10 ppm NO(2)和 20 ppm NH(3))在不同的工作温度下进行了表征,以进行比较。还研究了用不同浓度的 LaCl(3)溶液功能化的 SnO(2) NWs 传感器,以找到最佳值。比较气体传感结果表明,在 400°C 工作温度下,LaOCl-SnO(2) NWs 传感器在检测 CO(2)气体时表现出更高的响应、更短的响应-恢复时间和更好的选择性,优于裸 SnO(2) NWs 传感器。这一发现表明,用 LaOCl 功能化极大地提高了基于 SnO(2) NWs 传感器对 CO(2)的响应,这归因于(i)LaOCl(p 型)和 SnO(2)纳米线(n 型)之间形成 p-n 结,导致电子耗尽的扩展,以及(ii)LaOCl 对 CO(2)气体的有利催化作用。