Zhang Jianhua, Shi Yunbo, Tang Bolun, Zheng Canda
Higher Educational Key Laboratory for Measuring & Control Technology and Instrumentations of Heilongjiang Province, Harbin University of Science and Technology, Harbin 150080, China.
Sensors (Basel). 2025 Mar 22;25(7):1995. doi: 10.3390/s25071995.
This paper presents a ZnO-Pt/Ru sensor prepared by a two-step hydrothermal method with in situ-grown ZnO nanorods and doped with Pt and Ru elements by immersion sintering. Characterization results showed that Pt and Ru were successfully modified on the surface of ZnO nanorods. ZnO-Pt/Ru achieved a response of 25-50 ppm HS at the optimum operating temperature of 198 °C. In addition, the lower limit of HS detection of ZnO-Pt/Ru reached 50 ppb with a response of about 10%, indicating a wide concentration detection range. Due to the good catalytic properties of Pt, the recovery characteristics of ZnO at high concentrations of HS were significantly improved. The response time of ZnO-Pt/Ru (30 s) was also significantly shorter than pristine ZnO (56 s), with excellent selectivity. As far as the gas-sensitive enhancement mechanism is concerned, at the macroscopic level, the ZnO surface was modified by Pt and Ru, and this special structure of ZnO-Pt/Ru significantly increased the specific surface area. At the microscopic level, the PN junction formed between Pt/Ru and ZnO provided abundant holes for electron migration.
本文介绍了一种通过两步水热法制备的ZnO-Pt/Ru传感器,该传感器具有原位生长的ZnO纳米棒,并通过浸渍烧结掺杂了Pt和Ru元素。表征结果表明,Pt和Ru成功修饰在ZnO纳米棒表面。ZnO-Pt/Ru在198℃的最佳工作温度下对25-50 ppm的HS实现了响应。此外,ZnO-Pt/Ru对HS的检测下限达到50 ppb,响应约为10%,表明其浓度检测范围宽。由于Pt具有良好的催化性能,ZnO-Pt/Ru在高浓度HS下的恢复特性得到显著改善。ZnO-Pt/Ru的响应时间(30 s)也明显短于原始ZnO(56 s),具有优异的选择性。就气敏增强机制而言,在宏观层面,ZnO表面被Pt和Ru修饰,这种ZnO-Pt/Ru的特殊结构显著增加了比表面积。在微观层面,Pt/Ru与ZnO之间形成的PN结为电子迁移提供了丰富的空穴。