4.6 Article

Sr3Ce(PO4)3:Eu2+: a broadband yellow-emitting phosphor for near ultraviolet-pumped white light-emitting devices

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JOURNAL OF MATERIALS CHEMISTRY C
卷 4, 期 6, 页码 1170-1177

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c5tc02582f

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  1. Ministry of Science and Technology of Taiwan [MOST 104-2113-M-009-018-MY3, MOST 103-2811-M-009-081]

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We have synthesized and investigated a series of yellow-emitting Sr3Ce(PO4)(3):Eu2+ phosphors, showing an extreme broadband at around 535 nm (with a FWHM of ca. 200 nm/6760 cm(-1)) and a large Stoke shift (ca. 8265 cm(-1)), which is attributed to the 4f-5d transition of Eu2+ without the contribution from Ce3+ emission under excitation at long wavelengths (> 370 nm). However, such broadband Eu2+ emission is rather surprising, considering that there is only one cation site for the Eu2+ luminescent center. Herein, we investigated the crystal structure by performing X-ray Rietveld refinement on the synchrotron X-ray diffraction data, and demonstrate that both cation and anion sites in Sr3Ce(PO4)(3) are disordered in the host lattice. These unusual structural characters generate a variety of distinct Eu2+ sites, which is verified by decay lifetime analysis and electron paramagnetic resonance spectra, and thus result in astonishing broadband yellow-emission. Moreover, a white LED device with a color-rendering index of 86.5, a color temperature of 5996 K, and chromaticity coordinates of (0.32, 0.38) was obtained by combining a 405 nm near-UV LED chip and the phosphor blends of yellow-emitting Sr3Ce(PO4)(3):Eu2+ and the commercial blue-emitting BaMgA(10)O(17):Eu2+ phosphor. These results indicate that the as-prepared yellow-emitting Sr3Ce(PO4)(3):Eu2+ phosphor has potential applications in the dual-color-phosphor-converted WLEDs.

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