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

Bayesian-Optimized Dual-Mode Luminescence-Based Optical Thermometry Enabled by Negative Thermal Expansion in Lu2(MoO4)3:Yb–Er–Tm Phosphor

単著・共著の別

共著

著者

Reiko Furukawa ,  Takuya Hasegawa ,  Tong Fang ,  Saneyuki Ohno ,  Tomoyo Goto ,  Yasushi Sato ,  Ayahisa Okawa ,  Shu Yin

概要

Highly sensitive thermometry based on luminescence intensity ratio (LIR) of negative thermal expansion (NTE) Lu2(MoO4)3:Yb3+–Er3+–Tm3+ (LuMO:Yb–Er–Tm) phosphor with dual luminescence mode of upconversion (UC) and downshifting (DS) emissions is demonstrated. High emission intensity is fundamental for superior sensing performance. Since both UC and DS emissions strongly depend on interactions between lanthanide ions, optimization of dopant concentrations is crucial. To efficiently determine the optimal compositions, Bayesian optimization approach was employed, enabling identification with significantly fewer experimental configurations. Only 24 samples over 5 generations were synthesized to successfully identify the optimized compositions. The optimized LuMO:Yb–Er–Tm phosphor exhibited intense UC and DS emissions over the wide wavelength range under 980 nm excitation. Notably, the DS emissions displayed anti-thermal quenching behavior corresponding to the host's NTE nature, while the UC emissions showed thermal quenching over the range of 398 to 573 K. Exploiting these distinct temperature dependencies, the LIR based on DS/UC emission demonstrated high relative sensitivity. Furthermore, the material exhibited exceptional repeatability and low temperature uncertainty. Overall, this study demonstrates that LuMO:Yb–Er–Tm represents a promising phosphor material for practical high-performance optical thermometry.

発表雑誌等の名称

出版者

14

26

開始ページ

e71394_1

終了ページ

e71394_11

発行又は発表の年月

2026/05

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

10.1002/adom.71394

ID:NAID(CiNiiのID)

ID:PMID

URL

JGlobalID

arXiv ID

ORCIDのPut Code

DBLP ID