Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education, School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.
Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education, School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.
J Hazard Mater. 2014 Jul 15;276:262-70. doi: 10.1016/j.jhazmat.2014.05.044. Epub 2014 May 22.
Hierarchical nanostructured ZnO dandelion-like spheres were synthesized via solvothermal reaction at 200°C for 4h. The products were pure hexagonal ZnO with large exposure of (002) polar facet. Side-heating gas sensor based on hierarchical ZnO spheres was prepared to evaluate the acetone gas sensing properties. The detection limit to acetone for the ZnO sensor is 0.25ppm. The response (Ra/Rg) toward 100ppm acetone was 33 operated at 230°C and the response time was as short as 3s. The sensor exhibited remarkable acetone selectivity with negligible response toward other hazardous gases and water vapor. The high proportion of electron depletion region and oxygen vacancies contributed to high gas response sensitivity. The hollow and porous structure of dandelion-like ZnO spheres facilitated the diffusion of gas molecules, leading to a rapid response speed. The largely exposed (002) polar facets could adsorb acetone gas molecules easily and efficiently, resulting in a rapid response speed and good selectivity of hierarchical ZnO spheres gas sensor at low operating temperature.
通过在 200°C 下反应 4 小时的溶剂热反应,合成了具有分层纳米结构的类蒲公英状 ZnO 球。所得产物为纯六方相 ZnO,具有较大的(002)极性面暴露。基于分层 ZnO 球制备了侧加热气体传感器,以评估其对丙酮气体的传感性能。ZnO 传感器对丙酮的检测限为 0.25ppm。在 230°C 下,对 100ppm 丙酮的响应(Ra/Rg)为 33,响应时间短至 3s。该传感器对其他有害气体和水蒸气的响应可以忽略不计,表现出显著的丙酮选择性。高比例的电子耗尽区和氧空位有助于实现高气体响应灵敏度。类蒲公英状 ZnO 球的中空多孔结构促进了气体分子的扩散,从而实现了快速的响应速度。大比例暴露的(002)极性面可以轻松、高效地吸附丙酮气体分子,从而使分层 ZnO 球气体传感器在低工作温度下具有快速的响应速度和良好的选择性。