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Luminescent nanoparticles of Mn doped ZnS passivated with sodium hexametaphosphate

机译:六偏磷酸钠钝化的Mn掺杂ZnS的发光纳米粒子

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We report the synthesis of luminescent nanoparticles of manganese doped zinc sulfide (ZnS:Mn~(2+) ) with an emission peak at around 590 nm. Nanoparticles of ZnS:Mn~(2+) are prepared by a co-precipitation reaction from homogenous solutions of zinc and manganese salts. Based on Ostwald ripening and surface passivation, we discuss a mechanism for the formation of ZnS:Mn~(2+) nanoparticles. The reaction proceeds with the nucleation of ZnS crystals, which are immediately passivated by the anions in the solution. This in turn attracts cations including zinc and manganese which contribute to the growth of the crystal. These nanoparticles are sterically stabilized using polyphosphates of sodium namely sodium tripolyphosphate (STTP) and sodium hexametaphosphate (SHMP). The nanoparticles consist of particles of 60-80 nm in diameter, each containing primary crystallites that was estimated from the X-ray diffraction patterns to be at around 2.2 nm.
机译:我们报告了锰掺杂的硫化锌(ZnS:Mn〜(2+))的发光纳米粒子的合成,该发光纳米粒子的发射峰约为590 nm。 ZnS:Mn〜(2+)的纳米粒子是通过锌和锰盐均质溶液的共沉淀反应制备的。基于奥斯特瓦尔德熟化和表面钝化,我们讨论了ZnS:Mn〜(2+)纳米粒子的形成机理。反应随着ZnS晶体的成核而进行,ZnS晶体立即被溶液中的阴离子钝化。这又吸引了包括锌和锰在内的阳离子,这些阳离子有助于晶体的生长。这些纳米颗粒使用钠的多磷酸盐(即三聚磷酸钠(STTP)和六偏磷酸钠(SHMP))进行空间稳定。纳米粒子由直径为60-80 nm的粒子组成,每个粒子都包含从X射线衍射图估计为约2.2 nm的初级微晶。

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