Kumarage Gayan W C, Panamaldeniya Shasika A, Maddumage Dileepa C, Moumen Abderrahim, Maraloiu Valentin A, Mihalcea Catalina G, Negrea Raluca F, Dassanayake Buddhika S, Gunawardhana Nanda, Zappa Dario, Galstyan Vardan, Comini Elisabetta
SENSOR Lab, Department of Information Engineering, University of Brescia, 25133 Brescia, Italy.
Department of Physics and Electronics, Faculty of Science, University of Kelaniya, Kelaniya 11600, Sri Lanka.
Sensors (Basel). 2023 Oct 8;23(19):8322. doi: 10.3390/s23198322.
Titanium dioxide nanobelts were prepared via the alkali-hydrothermal method for application in chemical gas sensing. The formation process of TiO-(B) nanobelts and their sensing properties were investigated in detail. FE-SEM was used to study the surface of the obtained structures. The TEM and XRD analyses show that the prepared TiO nanobelts are in the monoclinic phase. Furthermore, TEM shows the formation of porous-like morphology due to crystal defects in the TiO-(B) nanobelts. The gas-sensing performance of the structure toward various concentrations of hydrogen, ethanol, acetone, nitrogen dioxide, and methane gases was studied at a temperature range between 100 and 500 °C. The fabricated sensor shows a high response toward acetone at a relatively low working temperature (150 °C), which is important for the development of low-power-consumption functional devices. Moreover, the obtained results indicate that monoclinic TiO-B is a promising material for applications in chemo-resistive gas detectors.
采用碱热法制备了用于化学气体传感的二氧化钛纳米带。详细研究了TiO-(B)纳米带的形成过程及其传感性能。利用场发射扫描电子显微镜(FE-SEM)研究了所得结构的表面。透射电子显微镜(TEM)和X射线衍射(XRD)分析表明,制备的TiO纳米带为单斜相。此外,TEM显示由于TiO-(B)纳米带中的晶体缺陷而形成了多孔状形态。在100至500°C的温度范围内研究了该结构对各种浓度的氢气、乙醇、丙酮、二氧化氮和甲烷气体的气敏性能。所制备的传感器在相对较低的工作温度(150°C)下对丙酮表现出高响应,这对于低功耗功能器件的开发很重要。此外,所得结果表明单斜TiO-B是用于化学电阻式气体探测器应用的有前途的材料。