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Preparation and Luminescence of ZnAl_2O_4:Mn Phosphors

机译:ZnAl_2O_4:Mn荧光粉的制备与发光

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Nano-sized manganese-doped zinc aluminate spinel (Zn_(1-x)Mn_xAl_2O_4; x = 0-6.0 mol%) powder phosphors were prepared by the sol-gel process. Zinc chloride, aluminum isopropoxide, and manganese chloride were employed as precursors. The influences of manganese concentration and heat treatment conditions on the crystallization and photoluminescence of the phosphors were investigated. The dried powders were amorphous to X-ray powder diffraction (XRD) and the single-phase ZnAl_2O_4 spinel crystallite started to form at temperatures as low as 600°C. The crystallization of powder did not significantly affected by various manganese concentrations. On heating at 1000°C, the resulting powder phosphors had the average crystallite and primary particle sizes of around 20-25 and 20-30 nm, respectively, depending on the dopant content and heating time. Photoluminescence spectra exhibited strong green emission bands centered at 512 nm under an excitation wavelength of 458 nm. The luminescence efficiency has been investigated as a function of dopant content, heating temperature, heating time, and specific surface area of the powders.
机译:通过溶胶-凝胶法制备了纳米尺寸的锰掺杂铝酸锌尖晶石(Zn_(1-x)Mn_xAl_2O_4; x = 0-6.0 mol%)。氯化锌,异丙醇铝和氯化锰用作前体。研究了锰浓度和热处理条件对磷光体结晶和光致发光的影响。干燥的粉末对X射线粉末衍射(XRD)是无定形的,并且在低至600°C的温度下开始形成单相ZnAl_2O_4尖晶石微晶。粉末的结晶不受各种锰浓度的显着影响。在1000℃下加热时,取决于掺杂剂含量和加热时间,所得粉末磷光体的平均微晶和一次粒径分别为约20-25nm和20-30nm。在458 nm的激发波长下,光致发光光谱显示出以512 nm为中心的强绿色发射带。已经研究了发光效率与粉末的掺杂剂含量,加热温度,加热时间和比表面积的关系。

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