In this work, we first investigate the relationship between temperature and lattice parameters by means of Rietveld refinement and then demonstrate its impact on the luminescence peak position of Eu 2+ in Sr 8 (Si 4 O 12 )Cl 8 . It is found that with increases in temperature, lattice expansion takes place without significant distortion of the coordination around Eu 2+ . As a result, the crystal field splitting of the Eu 2+ 5d state decreases. At the same time, with the experimental data of the full width at half-maximum of Eu 2+ emission at different temperatures and the infrared spectrum, the effective phonon frequency is evaluated and the main vibration motions are determined using first-principles calculation. Due to the high light yield under X-ray excitation and the excellent thermal stability of luminescence intensity and decay, a further optimized sample Sr 7.7 Eu 0.3 (Si 4 O 12 )Cl 8 could be a potential scintillation material.
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Liu et al. (2014) studied this question.
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