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A room temperature operated ammonia gas sensor based on Ag-decorated TiO2 quantum dot clusters

机译:基于AG装饰TiO2量子点簇的室温操作氨气传感器

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In this research, nanometer size aggregates (clusters) of titanium dioxide (TiO2) quantum dot clusters (QDs) have been successfully prepared via a convenient hydrolysis method at a low temperature (80 degrees C). Then different amounts (0-5%) of Ag were further decorated on the TiO2 QDs via dipping and annealing under a nitrogen atmosphere. After Ag decoration, the TiO2 QD sensing materials were synthesized, and characterization and NH3 gas sensing performance studies were carried out. Analysis via XRD and EDS was conducted, and the results showed that Ag+ ions were successfully reduced to Ag and decorated on the surface of the anatase TiO2 QDs. Noble metal Ag acted as the sites for adsorbates, catalysts, or promoters during the surface reactions, and as the element improving the thermal stability of the nanostructure. Therefore, the Ag-decorated gas sensor possessed better gas sensing performance than an undecorated gas sensor, and 3% Ag dopant proved to be the optimal amount of addition. The fabricated 3% Ag-decorated TiO2 QDs gas sensor, compared with the undecorated TiO2 QDs sensor, displayed a 6-times-higher sensing response at room temperature and demonstrated excellent gas sensing properties toward 10-100 ppm NH3 gas, good selectivity, gas sensitivity and stability, rapid response/recovery time, and a linear relationship between the response and the target gas concentration. In particular, the excellent performance of the Ag decorated-TiO2 QDs gas sensor was achieved at room temperature, which suggests the great possibility of a prompt gas sensing response, with the use of paper as a substrate, that requires a low operation temperature.
机译:在该研究中,通过在低温(80℃)下通过方便的水解方法成功地制备了二氧化钛(TiO 2)量子点簇(QDS)的纳米尺寸聚集体(簇)。然后通过在氮气氛下通过浸渍和退火进一步在TiO 2 QD上进一步装饰不同的量(0-5%)Ag。 Ag装饰后,合成了TiO2 QD传感材料,进行了表征和NH3气体传感性能研究。进行了通过XRD和ED的分析,结果表明,Ag +离子成功降低至Ag并在锐钛矿TiO 2 QD的表面上装饰。贵金属Ag作为吸附剂,催化剂或启动子的位点,并且作为提高纳米结构的热稳定性的元素。因此,AG装饰气体传感器具有比未污染的气体传感器更好的气体传感性能,并且3%Ag掺杂剂被证明是最佳的添加量。与未覆盖的TiO2 QDS传感器相比,制造的3%Ag装饰的TiO2 QDS气体传感器在室温下显示出6倍高的传感响应,并展示了优异的气体传感性能,朝向10-100ppm NH3气体,良好的选择性,气体灵敏度和稳定性,快速响应/恢复时间和响应与目标气体浓度之间的线性关系。特别地,在室温下实现了AG装饰-TiO2 QDS气体传感器的优异性能,这表明利用纸作为基板的迅速气体感测响应的可能性很大,这需要低操作温度。

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    《RSC Advances》 |2019年第42期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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