Pan Chao, Dong Li, Qu Bing, Wang Jing
College of Science, Dalian Ocean University, Dalian, Liaoning 116023, China.
J Nanosci Nanotechnol. 2011 Jun;11(6):5042-8. doi: 10.1166/jnn.2011.3887.
Three-dimensional ZnO hierarchical structures with high densities of secondary ZnO nanowires grown on primary ZnO fibers have been fabricated employing a co-precipitation reaction growth on the electrospinning PVA/zinc acetate nanofibers template followed by an annealing process in air. The structural analyses showed that as-prepared amorphous ZnC2O4 nanowires converted into wurtzite ZnO after annealing. The morphology of the ZnO hierarchical structures could be further controlled by adjusting the mixing ratio of H2C2O4 to CH3CH2OH. The hierarchical structured ZnO sample shows an enhanced photocatalytic performance compared with the other nanostructured ZnO powders of nanoparticles, and nanofibers, which can be attributed to the special structural feature with an open and secondary ZnO nanowire that significantly facilitates the diffusion and mass transportation of Methylene blue (MB) molecules and oxygen species in photochemical reaction of MB degradation.
通过在静电纺丝的聚乙烯醇/醋酸锌纳米纤维模板上进行共沉淀反应生长,随后在空气中退火,制备出了在初级氧化锌纤维上生长有高密度次级氧化锌纳米线的三维氧化锌分级结构。结构分析表明,制备出的非晶态草酸锌纳米线在退火后转变为纤锌矿型氧化锌。通过调整草酸与乙醇的混合比例,可以进一步控制氧化锌分级结构的形态。与其他纳米结构的氧化锌粉末(纳米颗粒和纳米纤维)相比,这种分级结构的氧化锌样品表现出增强的光催化性能,这可归因于其特殊的结构特征,即具有开放的次级氧化锌纳米线,这显著促进了亚甲基蓝(MB)分子和氧物种在MB降解光化学反应中的扩散和质量传输。