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Highly stable low temperature alcohol sensor based on hydrothermally grown tetragonal titania nanorods

机译:基于水热生长的四氧化钛纳米棒的高度稳定的低温酒精传感器

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摘要

Highly stable, low temperature (27-175 degrees C) alcohol (ethanol, methanol and 2-propanol) sensing performance of a hydrothermally grown tetragonal TiO2 nanorod array, targeting the detection level of 1-100 ppm, is reported in this paper. Synthesized titania nanorods were characterized by X-ray diffraction, energy dispersive spectroscopy (EDS) and field emission scanning electron microscopy (FESEM) to investigate the crystallinity, chemical compositions and surface morphology, respectively. Photoluminescence spectroscopy (PL spectra) was employed to find out the surface oxygen vacancies and band gap of the material. An alcohol sensing study, in resistive mode, was carried out and the optimum temperature for alcohol sensing was found to be 75 degrees C with the corresponding maximum response magnitude of similar to 69%, similar to 75% and similar to 80% towards 100 ppm ethanol, methanol and 2-propanol, with corresponding response time/recovery time of similar to 13 s/24 s, similar to 11/21 s and similar to 9/18 s, respectively. The sensor also offered efficient detection (response magnitude of 29%, 37% and 40%) of 1 ppm alcohol(s) with fast response time and recovery time of similar to 12-14 s and similar to 4-5 s, respectively. The minimal cross sensitivity, with other interfering species like acetone, benzene, xylene and 2-butanone, and appreciable long term stability showed the potential of the developed sensor for commercial applications.
机译:本文报道了以1-100 ppm的检测水平为目标的水热生长的四方TiO2纳米棒阵列的高稳定性,低温(27-175摄氏度)酒精(乙醇,甲醇和2-丙醇)感测性能。通过X射线衍射,能量色散谱(EDS)和场发射扫描电子显微镜(FESEM)对合成的二氧化钛纳米棒进行表征,以分别研究其结晶度,化学组成和表面形态。使用光致发光光谱法(PL光谱)来找出材料的表面氧空位和带隙。在电阻模式下进行了酒精感测研究,发现酒精感测的最佳温度为75摄氏度,相应的最大响应幅度在100 ppm时接近69%,75%和80%乙醇,甲醇和2-丙醇,相应的响应时间/恢复时间分别类似于13 s / 24 s,11/21 s和9/18 s。该传感器还提供了1 ppm酒精的有效检测(响应幅度为29%,37%和40%),快速响应时间和恢复时间分别接近12-14 s和4-5 s。与丙酮,苯,二甲苯和2-丁酮等其他干扰物质的最小交叉敏感性以及可观的长期稳定性表明,这种开发的传感器具有用于商业应用的潜力。

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