論文

基本情報

氏名 佐藤 泰史
氏名(カナ) サトウ ヤスシ
氏名(英語) Sato Yasushi
所属 理学部 化学科
職名 教授
researchmap研究者コード 6000010708
researchmap機関 岡山理科大学

題名

Key Role of Metal-to-Metal Charge Transfer Transition between Mo6+ and Bi3+ for Enhancement in NIR Luminescence of Gd2MoO6: Bi, Yb Nanophosphor

単著・共著の別

共著

著者

T. Hangai, T. Hasegawa, J. Xu, T. Nakanishi, T. Takeda, K. Nakano, K. Hongo, R. Maezono, T. Goto, Y. Sato, A. Okawa, S. Yin

概要

Near-infrared (NIR) luminescent materials play a significant role in various application fields, including food analysis, medical diagnosis, and bioimaging. Consequently, there is a growing demand for the development of efficient NIR phosphors. In this study, we successfully synthesized Bi3+-sensitized NIR luminescent nanophosphors, specifically Yb3+-doped Gd2MoO6 (GMO), utilizing a solvothermal reaction technique. The luminescent properties were comprehensively assessed with photoluminescence (PL), PL excitation (PLE) spectra, and time-resolved PL spectra at different temperatures. Additionally, electronic structures were estimated to gain insights into the PL mechanism, employing density functional theory calculations. It was found that GMO:Bi,Yb exhibited NIR luminescence due to the 4f–4f transitions of Yb3+ under ultraviolet light excitation, and the luminescence was sensitized by introducing Bi3+ ions. While the PL spectra in the visible region showed an increased intensity following Bi3+ doping, the absence of an additional peak suggested that the enhancement mechanism differs from the typical processes. The time-resolved PL spectra, wavelength-dependent PLE spectra, and theoretical calculation of GMO:Bi confirmed that the MMCT transitions between Mo6+ and Bi3+ ions contributed to its enhancement. The insights from this study should provide a valuable concept for developing efficient Yb3+-doped NIR luminescence phosphors. 

発表雑誌等の名称

The Journal of Physical Chemistry C

出版者

American Chemical Society

128

8

開始ページ

3351

終了ページ

3360

発行又は発表の年月

2024/02

査読の有無

有り

招待の有無

無し

記述言語

英語

掲載種別

研究論文(学術雑誌)

ISSN

ID:DOI

https://doi.org/10.1021/acs.jpcc.3c07501

ID:NAID(CiNiiのID)

ID:PMID

URL

JGlobalID

arXiv ID

ORCIDのPut Code

DBLP ID