Academic Thesis

Basic information

Name Sato Yasushi
Belonging department
Occupation name
researchmap researcher code 6000010708
researchmap agency Okayama University of Science

Title

Luminescence Tuning of NIR Luminescence Nanophosphor Bi3+/Yb3+-Doped RE2MoO6 (RE = Gd, Y, and Lu) and Gd2Mo1–xWxO6

Bibliography Type

Joint Author

Author

Taisei Hangai ,  Takuya Hasegawa ,  Jian Xu ,  Takayuki Nakanishi ,  Takashi Takeda ,  Tomoyo Goto ,  Yasushi Sato ,  Ayahisa Okawa ,  Shu Yin

Summary

Near-infrared nanophosphors have attracted attention due to their wide application fields, including component analysis, bioimaging, and spectral converters of sunlight for crystalline silicon solar cells (c-Si). Yb3+ ions exhibit near-infrared (NIR) luminescence at around 1000 nm, which is consistent with the first biological window and the maximum responsivity range of c-Si. Therefore, we focused on and successfully synthesized Bi3+/Yb3+-doped NIR luminescence nanophosphors, RE2MoO6:Bi3+,Yb3+ (RE=Gd, Y, and Lu) and Gd2Mo1–xWxO6:Bi3+,Yb3+ (x = 0–0.5), utilizing a solvothermal reaction process. All samples exhibit NIR luminescence of Yb3+ ions under ultra-violet (UV) light excitation and broadband excitation due to the charge transfer transition between the O 2p/Bi 6s and Mo 4d or W 5d orbitals, indicated by their optical properties of photoluminescence (PL), PL excitation (PLE), and reflectance spectra. Furthermore, to evaluate the contribution of the Gd2MoO6:Bi,Yb (GMO:Bi,Yb) nanophosphor to the conversion efficiency of c-Si, a phosphor-converted film was made using dimethylpolysiloxane (PDMS) and the GMO:Bi,Yb nanophosphor. The results showed that the conversion efficiency of c-Si with the PDMS/GMO:Bi,Yb film is higher than that of c-Si with the PDMS-only film. Based on these results, the utilization of down-shifting nanophosphors is able to enhance the conversion efficiency of c-Si, which could be beneficial in addressing future energy challenges.

Magazine(name)

The Journal of Physical Chemistry C

Publisher

ACS Publication

Volume

128

Number Of Pages

47

StartingPage

20360

EndingPage

20368

Date of Issue

2024/11

Referee

Exist

Invited

Not exist

Language

English

Thesis Type

Research papers (academic journals)

ISSN

DOI

10.1021/acs.jpcc.4c04814

NAID

PMID

URL

J-GLOBAL ID

arXiv ID

ORCID Put Code

DBLP ID