Department of Materials Science and Engineering, Korea University , Seoul 02841, Republic of Korea.
ACS Appl Mater Interfaces. 2017 Sep 20;9(37):32034-32043. doi: 10.1021/acsami.7b10294. Epub 2017 Sep 11.
NiO/NiWO composite yolk-shell spheres with a nanoscale NiO outer layer were prepared using one-pot ultrasonic spray pyrolysis and their gas sensing characteristics were studied. The NiO/NiWO yolk-shell spheres exhibited an extremely high response to 5 ppm p-xylene (ratio of resistance to gas and air = 343.5) and negligible cross-responses to 5 ppm ethanol, ammonia, carbon monoxide, hydrogen, and benzene, whereas pure NiO yolk-shell spheres showed very low responses and selectivity to all the analyte gases. The detection limit for p-xylene was as low as 22.7 ppb. This ultrasensitive and selective detection of p-xylene is attributed to a synergistic catalytic effect between NiO and NiWO, high gas accessibility with large specific surface area, and increased chemiresistive variation due to the formation of a heterojunction. The NiO/NiWO yolk-shell spheres with a thin NiO outer layer can be used to detect subppm-level p-xylene in a highly sensitive and selective manner for monitoring indoor air pollution.
采用一步超声喷雾热解法制备了具有纳米级 NiO 外层的 NiO/NiWO 核壳空心球,并研究了其气敏特性。NiO/NiWO 核壳空心球对 5ppm 的对二甲苯(气敏电阻与空气电阻的比值=343.5)表现出极高的响应,而对 5ppm 的乙醇、氨气、一氧化碳、氢气和苯几乎没有交叉响应,而纯 NiO 核壳空心球对所有分析物气体的响应和选择性都非常低。对二甲苯的检测限低至 22.7ppb。这种对 p-二甲苯的超灵敏和选择性检测归因于 NiO 和 NiWO 之间的协同催化作用、大比表面积的高气体可及性以及由于形成异质结而导致的化学电阻变化增加。具有薄 NiO 外层的 NiO/NiWO 核壳空心球可用于以高灵敏度和选择性检测亚 ppm 级别的 p-二甲苯,从而监测室内空气污染。