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Dangli Gao
- Personal Information
- Name (English): Dangli Gao
- Name (Pinyin): Gao Dangli
- E-Mail: 6e453dc915ba925c1c500c0125dd087970ac4d629edb7a0f4646b1864c2ad58fb73d4609ca02aa05bd260d0bd6ac00b598df87750a6f5f0ab1106b1de2dc3bdd7ac650842a7fa5fb153cb64bd73702259916a9b7c0476b9c698f3ac6ec4a66aa798e7b45f6ff05055250483c4b017b5c55675ebc2be60a90bd4c894d500d1854
- School/Department: 理学院
- Education Level: PhD student
- Contact Information: gaodangli@163.com or gaodangli@xauat.edu.cn
- Degree: Doctoral degree
- Professional Title: Professor
- Status: Employed
- Alma Mater: 陕西师范大学
Tuning upconversion emission by controlling particle shape in NaYF4:Yb3+/Er3+ nanocrystals
Release time:2024-08-09
Hits:
- Affiliation of Author(s):
- 理学院
- Journal:
- J. Appl. Phys.
- Key Words:
- 中文关键字:形貌控制;纳米晶体;光谱,英文关键字:shape controlling;nanocrystals;spectral
- Abstract:
- Rod-shaped and plate-shaped NaYF4:Yb3+/Er3+ nanocrystals (NCs) have been synthesized via a facile oleic acid-assisted hydrothermal route. The intensity and color tunability by shape controlling of NCs is demonstrated by up and down frequency conversions in NaYF4:Yb3+/Er3+ NCs. The results obviously show that rod-shaped NCs present much stronger upconversion luminescence intensity and smaller ratio of green to red emission intensity than that of plate-shaped NCs. The underlying reason of luminescence enhancement by shape controlling is explored, and a mechanism of the enhancement based on the decrease of nonradiation relaxation probability and the increase of energy transfer efficiency from Yb3+ to Er3+ is proposed for nanorods.
- Note:
- 高当丽 SCI 影响因子:2.2
- Co-author:
- 张翔宇,高伟
- First Author:
- Dangli Gao
- Indexed by:
- Journal paper
- Volume:
- 卷:111
- Issue:
- 期:3
- Page Number:
- 页:033505
- Translation or Not:
- no
- Date of Publication:
- 2012-02-01