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Enhanced Photoluminescence of Mn:ZnS/ZnS Core-Shell Nanocrystals Synthesized by Hot Injection Approach

机译:通过热注射方法合成的Mn:ZnS / ZnS核 - 壳纳米晶体的增强的光致发光

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Heavy metal ions free core-shell nanostructures with Mn~(2+) ion doped ZnS as seed over coated with various thicknesses of ZnS shell (Mn:ZnS/ZnS core-shell structure) were prepared via hot injection method in the presence of oleylamine media. The effect of Mn~(2+) ion doping and shell thicknesses on structural and optical properties of Mn:ZnS/ZnS core-shell have been systematically studied by X-ray diffraction (XRD), UV-Vis, photoluminescence and time resolved photoluminescence spectroscopies. From XRD results, the growth of wurtzite ZnS shell on zinc blende seeds was observed due to the presence of primary amines during the shell formation. The minimal red shift in the UV-Vis spectrum of Mn:ZnS seeds after introducing Zn precursor indicates that the growth of ZnS shell on Mn:ZnS seeds. After being passivated by protective ZnS shell on Mn:ZnS seeds, the Mn~(2+) emission at 585 nm was greatly enhanced with increasing zinc precursor via reducing non radiative transitions due to the Mn~(2+) ions on the surface of nanocrystals. The Mn~(2+) ion emission have long excited state lifetime in the range of ms for all samples. Good photoluminescence and longer excited state life time of Mn:ZnS/ZnS core/shell offers a great potential for various applications ranging from solid state lighting to bio-imaging.
机译:重金属离子自由核 - 壳纳米结构的Mn〜(2+)离子掺杂的ZnS作为种子上覆盖有ZnS的各种厚度壳(MN:硫化锌/ ZnS核 - 壳结构)在油胺的存在下通过热喷射的方法制备媒体。 Mn的效果〜锰的结构和光学性质(2+)离子掺杂和壳厚度:硫化锌/ ZnS核 - 壳进行了系统的通过X射线衍射(XRD),紫外 - 可见,光致发光和时间分辨光致发光的研究光谱。从X射线衍射结果,纤锌矿的ZnS的生长上闪锌矿种子壳,观察到由于伯胺的壳形成期间的存在。最小红移在Mn的UV-Vis光谱:将锌前体后的ZnS种子指示的ZnS的生长壳上的Mn:硫化锌种子。通过保护性的ZnS被钝化后壳上的Mn:硫化锌种子,将Mn〜(2+)在585 nm发射大大随着锌前体通过减少由于将Mn〜非辐射跃迁(2+)离子的表面上的增强型纳米晶体。中的Mn〜(2+)离子发射具有以毫秒为所有样品的范围长激发态寿命。良好的光致发光和Mn的较长激发态寿命时间:硫化锌/ ZnS核/壳提供了各种应用,从固态照明到生物成像的巨大潜力。

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