Local atomic environment of Yb3+ in alkaline-earth fluorohalide nanocrystals

Author:

Amarasinghe Dinesh K.1,Dissanayake K. Tauni1,Dhanapala B. Dulani1,Rabuffetti Federico A.1ORCID

Affiliation:

1. Department of Chemistry, Wayne State University, Detroit, MI 48202, USA

Abstract

The local atomic environment of Yb3+ ions doped into alkaline-earth fluorohalide nanocrystals was probed using Yb L2 edge EXAFS spectroscopy. Two structural models are proposed for the first coordination shell of Yb3+.

Funder

Division of Materials Research

National Science Foundation

Wayne State University

Publisher

Royal Society of Chemistry (RSC)

Subject

Condensed Matter Physics,General Materials Science,General Chemistry

Reference36 articles.

1. Y. R.Shen , T.Gregorian and W. B.Holzapfel , In Progress in Pressure Measurements with Luminescence Sensors , 28th Annual Meeting of the European High Pressure Research Group − 1st European Technology Forum: High Pressure and Materials, Bordeaux, France, 1990, Bordeaux, France , 1990 , pp. 73–75

2. Effect of pressure on the 7F1 multiplet and phonon sidebands of Sm2+ in BaFCl

3. Improved calibtration curve for the Sm2+:BaFCl pressure sensor

4. Characterization of the new luminescence pressure sensor SrFCl:Sm2+

5. Computed radiography utilizing scanning laser stimulated luminescence.

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