| Literature DB >> 32260816 |
Guo-Xiu Tong1, Fang-Fang Du, Yan Liang, Qian Hu, Ruo-Nan Wu, Jian-Guo Guan, Xian Hu.
Abstract
Complex ZnO architectures with tunable morphologies and structures were obtained by modulating only the base type and molar ratio of base to Zn2+ (α) using an easy one-pot hydrothermal approach without any template or organic additive. Characterizations by X-ray diffraction, Fourier-transform infrared spectrometry, scanning electron microscopy, transmission electron microscopy, and surface area analysis were performed. The effect of the base type and base/Zn2+ molar ratio on the morphology and corresponding mechanism were determined. The correlations between the microstructure and properties were established. The antibacterial effect of the ZnO samples was probably due to a combination of variable factors. Better antibacterial activity is derived from more effective antibacterial surfaces, which are mainly associated with the specific surface area and Zn-polar plane. Thus, flower-like architectures with larger specific surface areas and more highly exposed (0001) Zn-polar surfaces outwards are promising structures for ZnO antibacterial agents. This work provides a guide for devising and synthesizing highly efficient antibacterial materials.Entities:
Year: 2012 PMID: 32260816 DOI: 10.1039/c2tb00132b
Source DB: PubMed Journal: J Mater Chem B ISSN: 2050-750X Impact factor: 6.331