首页> 外文期刊>Nanotechnology >Influence of crystal structure and oxygen vacancies on optical properties of nanostructured multi-stoichiometric tungsten suboxides
【24h】

Influence of crystal structure and oxygen vacancies on optical properties of nanostructured multi-stoichiometric tungsten suboxides

机译:晶体结构和氧空位对纳米结构多化学计量亚氧化钨光学性质的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Four distinct tungsten suboxide (WO3-x ) nanomaterials were synthesized via chemical vapour transport reaction and the role of their crystal structures on the optical properties was studied. These materials grow either as thin, quasi-2D crystals with the W (n) O3n-1 formula (in shape of platelets or nanotiles), or as nanowires (W5O14, W18O49). For the quasi-2D materials, the appearance of defect states gives rise to two indirect absorption edges. One is assigned to the regular bandgap occurring between the valence and the conduction band, while the second is a defect-induced band. While the bandgap values of platelets and nanotiles are in the upper range of the reported values for the suboxides, the nanowires' bandgaps are lower due to the higher number of free charge carriers. Both types of nanowires sustain localized surface plasmon resonances, as evidenced from the extinction measurements, whereas the quasi-2D materials exhibit excitonic transitions. All four materials have photoluminescence emission peaks in the UV region. The interplay of the crystal structure, oxygen vacancies and shape can result in changes in optical behaviour, and the understanding of these effects could enable intentional tuning of selected properties.
机译:通过化学蒸汽输运反应合成了4种不同的亚氧化钨(WO3-x)纳米材料,并研究了其晶体结构对光学性能的影响。这些材料生长为具有 W (n) O3n-1 公式的薄准 2D 晶体(片状或纳米瓦的形状),或生长为纳米线(W5O14、W18O49)。对于准二维材料,缺陷状态的出现会产生两个间接吸收边缘。一个是发生在价带和导带之间的规则带隙,而第二个是缺陷诱导带。虽然片状物和纳米瓦的带隙值处于亚氧化物报告值的上限范围内,但由于自由电荷载流子的数量较多,纳米线的带隙较低。两种类型的纳米线都维持局部表面等离子体共振,如消光测量所证明的那样,而准二维材料表现出激子跃迁。这四种材料在紫外区域都有光致发光发射峰。晶体结构、氧空位和形状的相互作用会导致光学行为的变化,对这些效应的理解可以有意识地调整选定的特性。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号