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Experimental and Theoretical Study of the Mechanoluminescence of ZnS:Mn Nanoparticles

机译:ZnS:Mn纳米粒子机械发光的实验和理论研究

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摘要

We report the synthesis and mechanoluminescence (ML) of manganese-doped zinc sulfide (ZnS) nanoparticles. Clusters of ZnS:Mn nanocrystals were prepared by chemical precipitation, by mixing of solutions of zinc chloride, sodium sulfide, and manganese chloride. Mercaptoethanol (ME) was used as capping agent, to modify the surface of the nanoparticles and prevent their growth. The particle size of the nanocrystals, measured by use of x-ray diffraction and transmission electron microscopy, was in the range 2-5 nm. The ZnS:Mn nanoparticles were deformed impulsively by dropping a load from a fixed height. The ML intensity of ZnS:Mn nanocrystals increased with increasing mechanical stress i.e. with increasing impact velocity. The impact velocity-dependence of maximum ML intensity, I (m), and total ML intensity, I (T), are discussed. The effect of crystal size on the ML intensity-time curve is also discussed. ML intensity initially increases with increasing concentration of Mn in the samples, reaches an optimum value at a specific concentration of Mn, then decreases with further increasing concentration of Mn in the nanocrystals. The theory of the ML of nanoparticles is also discussed.
机译:我们报告了锰掺杂的硫化锌(ZnS)纳米粒子的合成和机械发光(ML)。通过化学沉淀,混合氯化锌,硫化钠和氯化锰的溶液,制备ZnS:Mn纳米晶体簇。巯基乙醇(ME)被用作封端剂,以修饰纳米颗粒的表面并防止其生长。通过使用X射线衍射和透射电子显微镜测量,纳米晶体的粒度为2-5nm。 ZnS:Mn纳米颗粒通过从固定高度掉落负载而发生脉冲变形。 ZnS:Mn纳米晶体的ML强度随着机械应力的增加即冲击速度的增加而增加。讨论了最大ML强度I(m)和总ML强度I(T)的冲击速度依赖性。还讨论了晶体尺寸对ML强度-时间曲线的影响。 ML强度最初随着样品中Mn浓度的增加而增加,在特定Mn浓度下达到最佳值,然后随着纳米晶体中Mn浓度的进一步增加而降低。还讨论了纳米颗粒的ML理论。

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