School of Material Science and Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
J Colloid Interface Sci. 2011 Aug 15;360(2):430-9. doi: 10.1016/j.jcis.2011.05.022. Epub 2011 May 15.
Electrospun ZnO precursor nanofibers of average diameters 122±64 nm, 117±44 nm and 110±39 nm were fabricated by controlling the Al concentration of a polymeric solution. The resulting nanofibers were characterized by the XRD, SEM, EDS, TEM, XPS and PL. The electrospun Al-doped ZnO nanofiber films were polycrystalline and composed of densely packed grains, with crystallite size ranging from 28.7 nm, 25.7 nm, 25.4 nm to 20.4 nm corresponding to the atomic concentration of aluminum from 0, 1.6, 2.5 to 5.8 at.%. The incorporation of aluminum resulted in a decrease trend in the grain size and lattice parameter of the ZnO nanofiber films. The room temperature PL spectra of all samples show three different emissions, including UV (ultraviolet) emission with an obvious blue shift, Vis (visible) emission and NIR (near infrared) emission, the intensity of which decreases monotonically as the doping concentration is increased except for the highest doping level. The impurity content correlates with changes in the PL spectra, and the appropriate Al doping can improve the optical properties of ZnO nanofibers. The small size effect and Al-doping or the impurity incorporation should be responsible for the blue shift observation in Al-doped ZnO nanofiber films.
通过控制聚合物溶液中的 Al 浓度,制备出平均直径为 122±64nm、117±44nm 和 110±39nm 的电纺 ZnO 前驱体纳米纤维。利用 XRD、SEM、EDS、TEM、XPS 和 PL 对所得纳米纤维进行了表征。电纺 Al 掺杂 ZnO 纳米纤维薄膜为多晶,由致密堆积的晶粒组成,晶粒尺寸范围为 28.7nm、25.7nm、25.4nm 和 20.4nm,对应于铝的原子浓度为 0、1.6、2.5 和 5.8at.%。铝的掺入导致 ZnO 纳米纤维薄膜的晶粒尺寸和晶格参数呈下降趋势。所有样品的室温 PL 光谱均显示出三种不同的发射,包括具有明显蓝移的紫外(UV)发射、可见光(Vis)发射和近红外(NIR)发射,其强度随着掺杂浓度的增加而单调降低,除了最高掺杂水平外。杂质含量与 PL 光谱的变化相关,适当的 Al 掺杂可以提高 ZnO 纳米纤维的光学性能。小尺寸效应和 Al 掺杂或杂质掺入可能是导致 Al 掺杂 ZnO 纳米纤维薄膜蓝移观察的原因。