Bao Di, Gao Peng, Wang Longqiang, Wang Ying, Chen Yujin, Chen Guorui, Li Guobao, Chang Cheng, Qin Wei
College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin, Heilongjiang 150001 (P. R. China).
College of Science, Harbin Engineering University, Harbin, Heilongjiang 150001 (P. R. China).
Chempluschem. 2013 Oct;78(10):1266-1272. doi: 10.1002/cplu.201300209. Epub 2013 Jul 8.
A new two-phase solution strategy has been developed for the synthesis of multifarious zinc oxide one-dimensional (1D) nanostructures, in which nanorod arrays (NAs), nanorod hollow spheres (NHSs), nanoribbons, nanowires, nanotubes, and nanonetworks were easily obtained at room temperature without using any catalysts, templates, or precursors. More importantly, an interesting formation mechanism of the 1D nanostructures in the benzene/water system and its distinctive size- and morphology-controlling ability were also discovered. Through a series of directed comparison experiments, it was found that the zinc source, reactant concentration, substrate, and reaction time played significant roles in this dipolar binary liquid technique. In addition, and considering their importance to semiconductor ZnO gas-sensing properties, the energy state and surface status of the as-obtained NA and NHS products were investigated through photoluminescence and surface wetting measurements. It was found that a large concentration of oxygen vacancies and high surface energy were present on the surface of the NAs and NHSs, which resulted in their enhanced ethanol gas-sensing properties at a relatively low temperature.
一种用于合成多种氧化锌一维(1D)纳米结构的新型两相溶液策略已被开发出来,在该策略中,无需使用任何催化剂、模板或前驱体,就能在室温下轻松获得纳米棒阵列(NAs)、纳米棒空心球(NHSs)、纳米带、纳米线、纳米管和纳米网络。更重要的是,还发现了苯/水体系中一维纳米结构有趣的形成机制及其独特的尺寸和形貌控制能力。通过一系列定向对比实验发现,锌源、反应物浓度、基底和反应时间在这种偶极二元液体技术中起着重要作用。此外,考虑到它们对半导体ZnO气敏性能的重要性,通过光致发光和表面润湿性测量研究了所获得的NA和NHS产物的能态和表面状态。结果发现,NAs和NHSs表面存在大量氧空位和高表面能,这导致它们在相对较低温度下具有增强的乙醇气敏性能。