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Luminescent properties of near UV excitable Ba2ZnS3 : Mn red emitting phosphor blend for white LED and display applications

机译:接近紫外线的Ba2ZnS3:Mn红光发射荧光粉混合物的发光特性,用于白色LED和显示应用

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摘要

A bright red colour emitting Mn doped Ba2ZnS3 phosphor was prepared by an ecologically acceptable carbothermal reduction method without an inert gas or hazardous gas (H2S) environment. The phosphor can be excited with UV wavelength radiation to realize emission in the visible range. X-ray diffraction studies confirm an orthorhombic structure with phase group, pnam. The photoluminescence (PL) emission spectrum shows a broad band with emission maximum at 625 nm under the host excitation of 358 nm, which lies in the near UV region. The concentration of Mn was varied from 0.0025 to 0.20 mole with respect to Zn and the optimum PL emission intensity was obtained at the concentration of 0.01 mole of Mn. The CIE (Commission Internationale de l'Eclairage) colour coordinates measurement (x = 0.654 and y = 0.321) shows that the primary emission is in the red region. The triband phosphors blend containing Sr-5(PO4)(3)Cl:Eu2+ (blue), ZnS:Cu,Al (green) and Ba2ZnS3:Mn (red) shows white light emission under 365 nm excitation having CIE chromaticity (x = 0.292 and y = 0.251). Since phosphor excitation lies in the near UV excitable region, giving a bright red emission, it can be used for applications in near UV phosphor converted white LED lighting and display devices.
机译:通过生态学上可接受的碳热还原方法,在无惰性气体或有害气体(H2S)环境的情况下,制备了发出红色的Mn掺杂的Ba2ZnS3荧光粉。可以用紫外线波长辐射激发磷光体,以实现可见光范围内的发射。 X射线衍射研究证实了具有相组pnam的正交结构。光致发光(PL)发射光谱显示一个宽频带,在358 nm的主激发下,最大发射波长在625 nm,位于近UV区域。相对于Zn,Mn的浓度在0.0025至0.20摩尔之间变化,并且在0.01摩尔的Mn的浓度下获得了最佳的PL发射强度。 CIE(国际照明委员会)的颜色坐标测量结果(x = 0.654,y = 0.321)显示主要发射位于红色区域。包含Sr-5(PO4)(3)Cl:Eu2 +(蓝色),ZnS:Cu,Al(绿色)和Ba2ZnS3:Mn(红色)的三频磷光体混合物在365 nm激发下具有CIE色度(x = 0.292,y = 0.251)。由于磷光体的激发位于近紫外光的可激发区域,发出明亮的红色光,因此可用于近紫外光的磷光转换的白色LED照明和显示设备中。

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