Zhang Sha, Chen Hsueh-Shih, Matras-Postolek Katarzyna, Yang Ping
School of Material Science and Engineering, University of Jinan, Jinan, 250022, P. R. China.
Department of Materials Science and Engineering, National Tsing Hua University, Hsinchu 300, Taiwan.
Phys Chem Chem Phys. 2015 Nov 11;17(45):30300-6. doi: 10.1039/c5cp04860e.
In this paper, ZnO nanoflowers (NFs) were fabricated by thermal decomposition in an organic solvent and their application in gas sensors and photocatalysis was investigated. These single crystal ZnO NFs, which were observed for the first time, with an average size of ∼60 nm and were grown along the {100} facet. It was suggested that oleylamine used in the synthesis inhibited the growth and agglomeration of ZnO through the coordination of the oleylamine N atoms. The NFs exhibited excellent selectivity to acetone with a concentration of 25 ppm at 300 °C because they had a high specific surface area that provided more active sites and the surface adsorbed oxygen species for interaction with acetone. In addition, the ZnO NFs showed enhanced gas sensing response which was also ascribed to abundant oxygen vacancies at the junctions between petals of the NFs. Furthermore, ZnO-reduced graphene oxide (RGO) composites were fabricated by loading the ZnO NFs on the surface of the stratiform RGO sheet. In the photodegradation of rhodamine B tests, the composite revealed an enhanced photocatalytic performance compared with ZnO NFs under UV light irradiation.
在本文中,通过在有机溶剂中热分解制备了氧化锌纳米花(NFs),并研究了它们在气体传感器和光催化方面的应用。这些首次观察到的单晶氧化锌纳米花平均尺寸约为60 nm,沿{100}晶面生长。研究表明,合成过程中使用的油胺通过油胺N原子的配位作用抑制了氧化锌的生长和团聚。这些纳米花在300℃对浓度为25 ppm的丙酮表现出优异的选择性,因为它们具有高比表面积,能提供更多活性位点以及表面吸附氧物种用于与丙酮相互作用。此外,氧化锌纳米花还表现出增强的气敏响应,这也归因于纳米花花瓣之间的交界处存在大量氧空位。此外,通过将氧化锌纳米花负载在层状氧化石墨烯(RGO)片的表面制备了氧化锌-还原氧化石墨烯(RGO)复合材料。在罗丹明B的光降解测试中,与紫外光照射下的氧化锌纳米花相比,该复合材料表现出增强的光催化性能。