Three-dimensionally ordered macroporous (3DOM) ZrO 2:Eu 3+ inverse opal materials prepared by polystyrene (PS) colloidal crystal templating, using the sol−gel method, were successfully fabricated. Their crystal structure, morphology, and photoluminescence (PL) properties and the effect of the photonic stop-band on the spontaneous emission of Eu 3+ ions were studied and compared with those of the nonporous sample. In the 3DOM ZrO 2:Eu 3+, significant suppression for the 5 D 0 - 7 F 1 transition peaking at 590 nm was observed, which was in good agreement with the photonic band gap calculated (∼586 nm). After grinding the 3D ZrO 2:Eu 3+ inverse opal material, the suppression of emission was restored due to the disappearance of the photonic band gap. In the 3DOM ZrO 2:Eu 3+, the luminescent lifetime of 5 D 0 - 7 F J depended strongly on emission wavelengths, which was mainly attributed to the appearance of different Eu 3+ centers. In the 3DOM ZrO 2:Eu 3+, three symmetry sites for Eu 3+ were identified by site-selective excitation, differing from the nonporous sample, in which only one site was identified.
No takes yet. Share an insight, caveat, or question.
Qu et al. (2009) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: