International Training Institute for Materials Science (ITIMS), Hanoi University of Science and Technology (HUST) , No 1, Dai Co Viet Street, Hanoi, Vietnam.
ACS Appl Mater Interfaces. 2016 Feb;8(7):4828-37. doi: 10.1021/acsami.5b08638. Epub 2016 Feb 9.
Monitoring toxic chlorine (Cl2) at the parts-per-billion (ppb) level is crucial for safe usage of this gas. Herein, ZnO, WO3, and SnO2 nanowire sensors were fabricated using an on-chip growth technique with chemical vapor deposition. The Cl2 gas-sensing characteristics of the fabricated sensors were systematically investigated. Results demonstrated that SnO2 nanowires exhibited higher sensitivity to Cl2 gas than ZnO and WO3 nanowires. The response (RCl2/Rair) of the SnO2 nanowire sensor to 50 ppb Cl2 at 50 °C was about 57. Hence, SnO2 nanowires can be an excellent sensing material for detecting Cl2 gas at the ppb level under low temperatures. Abnormal sensing characteristics were observed in the WO3 and SnO2 nanowire sensors at certain temperatures; in particular, the response level of these sensors to 5 ppm of Cl2 was lower than that to 2.5 ppm of Cl2. The sensing mechanism of the SnO2 nanowire sensor was also elucidated by determining Cl2 responses under N2 and dry air as carrier gases. We proved that the Cl2 molecule was first directly adsorbed on the metal oxide surface and was then substituted for pre-adsorbed oxygen, followed by lattice oxygen.
监测痕量氯气(Cl2)至十亿分比浓度(ppb)级别对于安全使用这种气体至关重要。在此,我们采用化学气相沉积的芯片级生长技术,制备了 ZnO、WO3 和 SnO2 纳米线传感器。系统研究了所制备传感器对 Cl2 气体的传感特性。结果表明,SnO2 纳米线对 Cl2 气体的灵敏度高于 ZnO 和 WO3 纳米线。SnO2 纳米线传感器对 50 ppb Cl2 的响应(RCl2/Rair)在 50°C 时约为 57。因此,SnO2 纳米线可以作为一种出色的传感材料,用于在低温下检测痕量 Cl2 气体。WO3 和 SnO2 纳米线传感器在某些温度下表现出异常的传感特性;特别是,这些传感器对 5 ppm Cl2 的响应水平低于对 2.5 ppm Cl2 的响应水平。通过确定在 N2 和干燥空气中作为载气时的 Cl2 响应,我们还阐明了 SnO2 纳米线传感器的传感机制。我们证明,Cl2 分子首先被直接吸附在金属氧化物表面,然后取代预先吸附的氧,接着取代晶格氧。