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Investigating the vibrational structures of lead bismuth oxyhalides PbBiO2X (X = Cl, Br, I) using temperature-dependent low-wavenumber Raman spectroscopy and the emission properties of the trapped states
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Investigating the vibrational structures of lead bismuth oxyhalides PbBiO2X (X = Cl, Br, I) using temperature-dependent low-wavenumber Raman spectroscopy and the emission properties of the trapped states

Yu-Jung Wei, Fu-Yu Liu, Chiing-Chang Chen 和 I-Chia Chen
Materials chemistry and physics, 卷.342, 頁.130992
15/09/2025
Web of Science ID: WOS:001490662500001

摘要

Emission of lead bismuth oxyhalides Lead bismuth oxyhalides Low-wavenumber Raman spectra Raman spectra
Photocatalysts PbBiO2X exhibit promising catalytic behavior in the visible range. Here we study the vibrational structures and emission properties of the trapped states in these catalysts using temperature-dependent Raman spectroscopy and emission spectroscopy to understand the catalytic activity. The Raman spectra of PbBiO2X in the range of 77–623 K were obtained under both vacuum and atmospheric pressure conditions. Five bands in the range of 50–500 cm−1 for all three materials were observed and assigned. From density functional theory calculations, the structural configurations of PbBiO2X are assigned to the I4/mmm structure. Phonon redshifts with temperature are mainly attributed to thermal expansion of the crystal volume. PbBiO2X exhibited more photoluminescence (PL) in near infrared after heated in a vacuum environment. The emission intensity decreased first with temperature, then increased to reach a maximum, and decreased at high temperatures. The decrease at low temperatures is for thermal quenching with activation energies of 41.4/45.5/32.6 meV for X = Cl/Br/I. At medium temperatures, the increased PL with activation energies of 321/530/590 meV, is explained to thermal activation to high-energy radiative trapped states. At > 400 K, the decreased PL is attributed to electron-hole dissociation, with activation energies of 570/644 meV for Cl/Br. [Display omitted] •Phonon redshifts from thermal expansion of crystal volume.•More defects are produced under heated and vacuum conditions.•Emission varied from thermal quenching, activation to exciton states, and electron-hole dissociation.

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合作類型
機構合作
引用書目主題
2 Chemistry
2.74 Photocatalysts
2.74.5 TiO2 Photocatalysis
Web Of Science研究領域
Materials Science, Multidisciplinary
ESI研究領域
Materials Science

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