【作者】:Wang Qingji*, Li Xu,Liu Fangmeng,Liu Chang,Su Tan, Lin Jun,Sun Peng,Sun Yanfeng,Liu Fengmin, Lu Geyu
【题目】:The enhanced CO gas sensing performance of Pd/SnO2 hollow sphere sensors under hydrothermal conditions
【关键词】:PD NANOPARTICLES, NANOSTRUCTURES,NANOSPHERES,NANOSHEETS,SURFACE,DESIGN,OXYGEN
【版面信息】:RSC ADVANCES 6 (2016) 80455-80461
摘要:
Pd-doped SnO2hollow spheres were synthesized via a facile one-step hydrothermal route. Utilized as the materials in sensors, the 3.0 wt% Pd-doped SnO2demonstrated more excellent gas-sensing properties towards CO than 1.5 wt% and 4.5 wt% Pd-doped SnO2. Compared with the SnO2hollow spheres gas sensor, the optimum operating temperature of the Pd-doped SnO2hollow spheres gas sensor dropped to 200℃from 250℃; the response value to 100 ppm CO was raised to 14.7 from 2.5 accordingly. Furthermore, the response and recovery times of the 3.0 wt% Pd-doped SnO2sensor are 5 s and 92 s, respectively, to 100 ppm CO at 200℃. It is believed that its enhanced gas-sensing performances are derived from the synergistic interactions between the dispersed Pd and the characteristic configuration of the SnO2hollow sphere. In addition, theoretical calculations have also been performed with periodic slab models by using density functional theory, which explain well our experimental phenomenon.