首页> 外文期刊>Diamond and Related Materials >Can europium atoms form luminescent centres in diamond: A combined theoretical-experimental study
【24h】

Can europium atoms form luminescent centres in diamond: A combined theoretical-experimental study

机译:可以在钻石中形成发光中心的钻石:一个综合理论实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

The incorporation of Eu into the diamond lattice is investigated in a combined theoretical experimental study. The large size of the Eu ion induces a strain on the host lattice, which is minimal for the Eu-vacancy complex. The oxidation state of Eu is calculated to be 3+ for all defect models considered. In contrast, the total charge of the defect-complexes is shown to be negative: -1.5 to -2.3 electron. Hybrid-functional electronic-band structures show the luminescence of the Eu defect to be strongly dependent on the local defect geometry. The 4-coordinated Eu substitutional dopant is the most promising candidate to present the typical Eu3+ luminescence, while the 6-coordinated Eu-vacancy complex is expected not to present any luminescent behaviour. Preliminary experimental results on the treatment of diamond films with Eu-containing precursor indicate the possible incorporation of Eu into diamond films treated by drop-casting. Changes in the PL spectrum, with the main luminescent peak shifting from approximately 614 nm to 611 nm after the growth plasma exposure, and the appearance of a shoulder peak at 625 nm indicate the potential incorporation. Drop-casting treatment with an electronegative polymer material was shown not to be necessary to observe the Eu signature following the plasma exposure, and increased the background luminescence.
机译:在一个合并的理论实验研究中研究了欧盟进入金刚石格中的。大尺寸的EU离子在主晶格上诱导菌株,这对于Eu空位复合物是最小的。欧盟的氧化状态计算为3+,用于考虑所有缺陷模型。相反,缺陷复合物的总电荷显示为阴性:-1.5至-2.3电子。混合功能的电子带结构显示EU缺陷的发光强烈依赖于局部缺陷几何形状。 4协调的欧盟取代掺杂剂是呈现典型的EU3 +发光最有前途的候选者,而预计6-协调的欧盟空位复合体是不呈现任何发光行为。含有EU的前体的金刚石膜处理的初步实验结果表明,可以将EU掺入通过滴浇铸处理的金刚石薄膜。 PL光谱的变化,在生长等离子体暴露后,主发光峰值从大约614nm到611nm移位,并且在625nm处的肩峰的外观表示潜在的掺入。显示用电致剂聚合物材料的掉铸处理不需要观察血浆暴露后的欧盟签名,并增加背景发光。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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