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

Luminescence Modulation through Ratiometric Quenching in BiOCl:Eu Red Phosphor under H2S Gas Exposure

単著・共著の別

共著

著者

Taisei Hangai ,  Takuya Hasegawa ,  Ayahisa Okawa ,  Sun Woog Kim ,  Tomoyo Goto ,  Yasushi Sato ,  Shu Yin

概要

Ratiometric gas sensing based on luminescence intensity ratios (LIR) offers robustness against environmental fluctuations, because it relies on relative rather than absolute signal intensity. While LIR-based techniques using inorganic phosphors have been widely applied for temperature and pH sensing, their implementation in gas sensing remains limited. In this study, Eu3+-doped BiOCl phosphors were investigated for the ratiometric detection of low concentrations of hydrogen sulfide (H2S) gas. X-ray diffraction analysis confirmed the successful incorporation of Eu3+ into the BiOCl lattice, accompanied by a gradual lattice contraction by Eu3+ doping. Scanning electron microscopy revealed plate-like morphologies typical of BiOCl with homogeneous elemental distribution. Photoluminescence and photoluminescence excitation spectra showed the characteristic red emissions of Eu3+ (5D0 → 7FJ transitions) and a broad excitation band in the near-UV region, mainly attributed to the band-edge transition. Upon exposure to 1–5 ppm of H2S gas, the Eu3+ emission intensities were selectively quenched in a concentration-dependent manner. In particular, the LIR of I700/I596 and I700/I620 exhibited clear variation with H2S concentration, enabling reliable ratiometric sensing. Electron spin resonance and X-ray photoelectron spectroscopy revealed that the quenching mechanism originates from the H2S-induced partial reduction of Bi3+ to Bi2+, generating oxygen vacancies that act as nonradiative recombination centers. Judd–Ofelt analysis further indicated a moderate increase in the Ω2 parameter and a more pronounced enhancement of Ω4, suggesting an increase in Eu–O bond covalency without significant changes in local symmetry. These insights provide a deeper understanding of the luminescence modulation mechanism and demonstrate the potential of BiOCl:Eu as a robust ratiometric gas sensor material.

発表雑誌等の名称

ACS Applied Nano Materials

出版者

ACS Publication

3

11

開始ページ

2633

終了ページ

2643

発行又は発表の年月

2025/10

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

10.1021/acsaom.5c00377

ID:NAID(CiNiiのID)

ID:PMID

URL

JGlobalID

arXiv ID

ORCIDのPut Code

DBLP ID