Photoluminescence and Cathodoluminescence Properties of Nanocrystalline Ca 2 Gd 8 Si 6 O 26 : Sm 3+ Phosphors

Фотолюминесцентные и катодолюминесцентные свойства нанокристаллических фосфоров Ca2Gd8Si6O26: Sm3+
Byung Kee Moon, Ganji Seeta Rama Raju, Jae Su Yu, Jin Young Park, Hong Chae Jung
2011-07-27

Ca2Gd8Si6O26Sm3+ phosphorscathodoluminescence (CL) at 1–5 kVphotoluminescence (PL) spectrasolvothermal synthesis
Nanocrystalline Ca 2 Gd 8 Si 6 O 26 ( CGS ): Sm 3+ phosphors were synthesized by solvothermal reaction method. The structural and morphological properties of the samples were evaluated by X‐ray diffraction and scanning electron microscopy. The photoluminescence excitation and emission spectra along with decay properties were investigated as a function of Sm 3+ concentration. Under 405 nm excitation wavelength, the photoluminescence spectra showed three emission peaks at 565 nm ( 4 G 5/2 → 6 H 5/2 ) and at 650 nm ( 4 G 5/2 → 6 H 9/2 ), and with an intense orange emission at 600 nm ( 4 G 5/2 → 6 H 7/2 ) . Based on the orange emission performance, the Sm 3+ concentration was optimized to be at 2 mol%. The low voltage cathodoluminescence ( CL ) properties were also performed for 2 mol% Sm 3+ ‐doped CGS phosphors as a function of accelerating voltage (1–5 kV). From the CL spectra, the reddish‐orange emission was observed. The calculated Commission International De I‐Eclairage chromaticity coordinates are in close proximity to the chromaticity coordinates of Nichia corporation developed amber light emitting diodes.
1
Calculated CIE chromaticity coordinates of the phosphor are close to Nichia corporation's amber LEDs coordinates.
2
Low-voltage cathodoluminescence (1–5 kV) of 2 mol% Sm3+-doped CGS shows reddish-orange emission.
3
Nanocrystalline Ca2Gd8Si6O26:Sm3+ phosphors were successfully synthesized using a solvothermal reaction method.
4
Optimal Sm3+ concentration for strongest orange emission was determined to be 2 mol%.
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Photoluminescence under 405 nm excitation shows three Sm3+ emission peaks at 565 nm, 600 nm (intense orange), and 650 nm corresponding to 4G5/2→6H5/2, 4G5/2→6H7/2, and 4G5/2→6H9/2 transitions.
6
X-ray diffraction and scanning electron microscopy confirmed the structural and morphological properties of the synthesized samples.

Nanocrystalline Ca2Gd8Si6O26:Sm3+ phosphors synthesized by solvothermal reaction

Photoluminescence (PL) and low-voltage cathodoluminescence (CL) properties including excitation/emission spectra, decay behavior, emission peak positions and chromaticity as a function of Sm3+ concentration and accelerating voltage

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2011-07-27
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Byung Kee Moon
Ganji Seeta Rama Raju
Jae Su Yu
Jin Young Park
Hong Chae Jung
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