Department of Materials Science and Engineering, Korea University, Anam-Dong, Seongbuk-Gu, Seoul 136-713, Republic of Korea.
Nanoscale. 2013 Aug 7;5(15):7066-73. doi: 10.1039/c3nr01281f.
Ultraselective and sensitive detection of xylene and toluene with minimum interferences of other indoor air pollutants such as benzene, ethanol, and formaldehyde is achieved using NiO hierarchical nanostructures doped with Cr. Pure and 1.15-2.56 at% Cr-doped NiO flower-like hierarchical nanostructures assembled from nanosheets are prepared by a simple solvothermal reaction and their gas sensing characteristics toward o-xylene and toluene gases are investigated. The 1.15 at% Cr-doped NiO hierarchical nanostructures show high responses to 5 ppm of o-xylene and toluene (ratio of resistance to gas and air = 11.61 and 7.81, respectively) and negligible cross-responses to 5 ppm of benzene, formaldehyde, ethanol, hydrogen, and carbon monoxide. However, pure NiO nanostructures show low responses to 5 ppm of o-xylene and toluene (ratio of resistance to gas and air = 2.01 and 1.14, respectively) and no selectivity toward any specific gas is observed. Significant enhancement of the response and selectivity to o-xylene and toluene is attributed to the decrease in the hole concentration in NiO and the catalytic oxidation of methyl groups by Cr doping.
使用掺杂 Cr 的 NiO 分层纳米结构可实现对二甲苯和甲苯的超选择性和高灵敏度检测,同时对苯、乙醇和甲醛等其他室内空气污染物的干扰最小。通过简单的溶剂热反应制备了由纳米片组装而成的纯 NiO 和 1.15-2.56 at%Cr 掺杂 NiO 花状分层纳米结构,并研究了它们对邻二甲苯和甲苯气体的气敏特性。1.15 at%Cr 掺杂 NiO 分层纳米结构对 5 ppm 的邻二甲苯和甲苯表现出高响应(气体与空气的电阻比分别为 11.61 和 7.81),对 5 ppm 的苯、甲醛、乙醇、氢气和一氧化碳几乎没有交叉响应。然而,纯 NiO 纳米结构对 5 ppm 的邻二甲苯和甲苯的响应较低(气体与空气的电阻比分别为 2.01 和 1.14),对任何特定气体都没有选择性。对邻二甲苯和甲苯的响应和选择性的显著增强归因于 NiO 中空穴浓度的降低和 Cr 掺杂对甲基的催化氧化。