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Synthesis of Highly Emissive Mn-Doped ZnSe Nanocrystals without Pyrophoric Reagents

机译:无发火试剂的高发射锰掺杂ZnSe纳米晶的合成

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Manganese-doped zinc selenide quantum dots (Mn:ZnSe d-dots) with high optical quality, pure dopant emission with 40−60% photoluminescence quantum yield, were synthesized with air-stable and generic starting materials, namely zinc (manganese) fatty acid salts with corresponding free fatty acids, Se powder, fatty amine, and octadecene. The pyrophoric, highly toxic, and expensive organo-phospines were eliminated from the existing synthetic protocols for high quality Mn:ZnSe d-dots, which changed the reaction profile substantially mainly because of the enhanced reactivity of elemental Se with the presence of fatty amines. The reaction temperatures for two key processes involved in “nucleation-doping”, namely, formation of MnSe nanoclusters and their overcoating by the host, were both reduced. Multiple injection techniques were employed to realize balanced diffusion of the Mn ions in the d-dots. The resulting d-dots were found to be in zinc-blende crystal structure, with optimal spherical shape, nearly monodispersed, and controlled in their Mn:Zn ratio.
机译:合成了具有高光学质量,纯掺杂物发射,光致发光量子产率为40-60%的锰掺杂硒化锌量子点(Mn:ZnSe d-dots),它是由空气稳定的通用原料即锌(锰)脂肪酸合成的盐与相应的游离脂肪酸,硒粉,脂肪胺和十八碳烯。自发的,高毒的和昂贵的有机膦从用于高质量Mn:ZnSe d-点的现有合成方案中消除了,这主要是由于元素Se在脂肪胺的存在下增强了反应性,从而改变了反应曲线。涉及“成核掺杂”的两个关键过程的反应温度都降低了,即MnSe纳米团簇的形成和主体对它们的覆盖。采用多次注入技术以实现d点中Mn离子的平衡扩散。发现所得的d-点为闪锌矿晶体结构,具有最佳的球形形状,几乎单分散,并且其Mn:Zn比受到控制。

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