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The effect of ultraviolet irradiation on the optical properties of ZnS: Mn synthesized by hydrothermal method and using thioglycolic acid

机译:紫外线照射对ZnS:Mn的光学性质的影响,用水热法合成,使用巯基乙酸

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ZnS:Mn nanoparticles (C = 15 mol%) were synthesized from thioglycolic acid HSCHCOOH (TGA) and initial chemicals Zn(CHCOO).2HO, Mn(CHCOO).4HO by the hydrothermal method at 220 °C for 5h and 20 h. The XRD patterns show that nanoparticles possess a hexagonal wurtzite crystalline structure with size about of 10-20 nm. Due to TGA creating a S source, the hydroxyl groups of a-hydroxyl acetic acid (glycolic acid) molecules with electron pairs can be coordinated with vacancy 3d (t) orbitale of Zn, Mn ions and to form surface passive shells of ZnS and ZnS:Mn. The effect of ultraviolet (UV) irradiation on the photoluminescence (PL) spectra of coated ZnS, ZnS:Mn nanoparticles also was investigated by UV wavelength of 337 nm. The results show that the yellow-orange band intensity increases with increasing UV irradiation time, but their PL peak position unchanged. These results can be explained by the energy transition process, polymerization, photochemical process and gradual diffusion of Mn into a ZnS crystal network due to the activity of this UV irradiation.
机译:ZnS:Mn纳米颗粒(C = 15mol%)由巯基乙酸锂(TGA)和初始化学品Zn(CHCOO).2HO,Mn(CHCOO).4HO,通过水热法在220℃下以5h和20小时。 XRD图案表明,纳米颗粒具有六边形紫立岩晶体结构,尺寸约为10-20nm。由于TGA产生S源,α-羟基乙酸(乙醇酸)分子的羟基可以与Zn,Mn离子的空位3D(t)胰岛物配合,并形成ZnS和Zns的表面被动壳:Mn。通过UV波长为337nm,研究了紫外(UV)照射对涂覆ZnS的光致发光(PL)光谱的影响,也研究了MN纳米粒子。结果表明,随着紫外线照射时间的增加,黄橙带强度增加,但它们的PL峰值位置不变。由于该UV照射的活性,可以通过能量转变过程,聚合,光化学过程和Mn逐渐扩散到ZnS晶体网络中来解释这些结果。

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