2016•Shanghai Institute of Optics and Fine Mechanics, CAS Institutional RepositoryRequires access

Preperation and Photoluminescent Properties of Ca2AlSi3O2N5:Sm3+ Phosphor

万军, 王璠, 吴立昂, 吴一民, Xusheng Qiao, 樊先平, onedream@zju.edu.cn, fanxp@zju.edu.cn

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Abstract

Ca2AlSi3O2N5:Sm3+ phosphor was prepared by a combination of in-situ co-precipitation method with a gas-reduction-nitridation method at 1100 degrees C. Its structure and luminescent properties were investigated with XRD and PL. The emission spectrum of Ca2AlSi3O2N5:Sm3+ shows several pesks at 602 nm ((4)G(5/2) -> H-6(7/2)), and 650 nm ((4)G(5/2) -> H-6(9/2)) under 287 nm excitation. The effect of the doping concentration of Sm3+ activator on the luminescence properties was studied. It is found that the luminescence intensity increases with increasing of Sm3+ doping concentration within limits, and then decreases. The photoluminescence intensity reaches the highest when the Sm3+ doping concentration is 1 mol%.

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Ca2AlSi3O2N5:Sm3+ phosphor was prepared by a combination of in-situ co-precipitation method with a gas-reduction-nitridation method at 1100 degrees C. Its structure and luminescent properties were investigated with XRD and PL. The emission spectrum of Ca2AlSi3O2N5:Sm3+ shows several pesks at 602 nm ((4)G(5/2) -> H-6(7/2)), and 650 nm ((4)G(5/2) -> H-6(9/2)) under 287 nm excitation. The effect of the doping concentration of Sm3+ activator on the luminescence properties was studied. It is found that the luminescence intensity increases with increasing of Sm3+ doping concentration within limits, and then decreases. The photoluminescence intensity reaches the highest when the Sm3+ doping concentration is 1 mol%.

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Available abstract

Ca2AlSi3O2N5:Sm3+ phosphor was prepared by a combination of in-situ co-precipitation method with a gas-reduction-nitridation method at 1100 degrees C. Its structure and luminescent properties were investigated with XRD and PL. The emission spectrum of Ca2AlSi3O2N5:Sm3+ shows several pesks at 602 nm ((4)G(5/2) -> H-6(7/2)), and 650 nm ((4)G(5/2) -> H-6(9/2)) under 287 nm excitation. The effect of the doping concentration of Sm3+ activator on the luminescence properties was studied. It is found that the luminescence intensity increases with increasing of Sm3+ doping concentration within limits, and then decreases. The photoluminescence intensity reaches the highest when the Sm3+ doping concentration is 1 mol%.

Key concepts: Phosphor, Photoluminescence, Luminescence, Doping, Activator (genetics), Materials science, Analytical Chemistry (journal), Emission intensity

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