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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Mn-doped Cu-Zn-In-S/ZnS nanocrystals: optical properties and their use as time-gated fluorescence probes
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Mn-doped Cu-Zn-In-S/ZnS nanocrystals: optical properties and their use as time-gated fluorescence probes

机译:Mn-掺杂的Cu-Zn-In-S / ZnS纳米晶体:光学性质及其用作时间门控荧光探针

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摘要

In this work, Mn-doped Cu-Zn-In-S/ZnS nanocrystals ((Mn:CZIS/ZnS NCs, 3 similar to 5 nm in sizes) were prepared by varying the Cu and Mn level in synthesis, and their optical properties including optical spectra and fluorescence lifetimes were investigated. It is found that with a certain range of the Cu or Mn level, the NCs present fluorescence peaks at around 605 nm, but their fluorescence lifetimes do be affected by the Cu or Mn level. Significant NC fluorescence red-shift and lifetime drop-off are observed when the Cu level reaches a much high level. The possible role of Cu and its interaction with Mn in NC fluorescence mechanisms were discussed. The use of Mn:CZIS/ZnS NCs as highly sensitive time-gated probes was demonstrated through a biotin-avidin assay.
机译:在该作品中,通过改变合成中的Cu和Mn水平和它们的光学性质,通过改变Cu和Mn水平来制备Mn掺杂的Cu-Zn-in-S / ZnS纳米晶体((Mn:CZIS / ZnS NC,相似的5nm),以及它们的光学性质 研究了包括光谱和荧光寿命。发现,在一定的Cu或Mn水平范围内,NCS呈现荧光峰在约605nm的荧光峰,但它们的荧光寿命会受到Cu或Mn水平的影响。显着的NC 当Cu水平达到高水平时,观察到荧光红移和寿命掉落。讨论了Cu及其与Nc荧光机制中的Mn的可能作用。使用Mn:Czis / ZnS NCS高敏感 通过生物素 - 抗生物素蛋白测定证明了时间门控探针。

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