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Zero-dimensional Cs4EuX6 (X = Br, I) all-inorganic perovskite single crystals for gamma-ray spectroscopy.

Authors :
Koschan, Merry
Wu, Yuntao
Greeley, Ian
Loyd, Matthew
Rutstrom, Daniel J.
Melcher, Charles L.
Stand, Luis
Chen, Shiyou
Han, Dan
Du, Mao-Hua
Chakoumakos, Bryan C.
Shi, Hongliang
Source :
Journal of Materials Chemistry C; 7/7/2018, Vol. 6 Issue 25, p6647-6655, 9p
Publication Year :
2018

Abstract

Organic–inorganic and all-inorganic halide perovskites have become leading candidates toward high-performance optoelectronic devices and radiation detectors. In this work, we report novel zero-dimensional Cs<subscript>4</subscript>EuX<subscript>6</subscript> (X = Br, I) perovskite single crystals as self-activated scintillators with superior performance for gamma-ray spectroscopy. Both Cs<subscript>4</subscript>EuBr<subscript>6</subscript> and Cs<subscript>4</subscript>EuI<subscript>6</subscript> single crystals grown by the Bridgman method were determined to have the trigonal crystal structure with the R3̅c space group, and have a melting point of approximately 540 °C. Cs<subscript>4</subscript>EuBr<subscript>6</subscript> and Cs<subscript>4</subscript>EuI<subscript>6</subscript> exhibit blue emission under UV excitation and high light yields of 78 000 ± 4000 photons per MeV and 53 000 ± 3000 photons per MeV under <superscript>137</superscript>Cs gamma-ray irradiation, respectively. In particular, the former represents the best result achieved for self-activated scintillators thus far. Thermally stimulated luminescence studies and density functional theory calculations elucidate the correlation between halogen vacancies and long-lived emission (afterglow) at room temperature in Cs<subscript>4</subscript>EuX<subscript>6</subscript> (X = Br, I) single crystals. Our findings not only demonstrate the high gamma-ray detection efficiency in Cs<subscript>4</subscript>EuX<subscript>6</subscript> (X = Br, I), but will further promote the development of 0D metal halide-based novel luminescent and radiation detection materials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20507526
Volume :
6
Issue :
25
Database :
Complementary Index
Journal :
Journal of Materials Chemistry C
Publication Type :
Academic Journal
Accession number :
130392242
Full Text :
https://doi.org/10.1039/c8tc01458b