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pH-Induced transformation of ligated Au-25 to brighter Au-23 nanoclusters

机译:pH-Induced结扎Au-25转变亮Au-23发光机制

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Thiolate-protected gold nanoclusters have recently attracted considerable attention due to their size-dependent luminescence characterized by a long lifetime and large Stokes shift. However, the optimization of nanocluster properties such as the luminescence quantum yield is still a challenge. We report here the transformation of Au(25)Capt(18) (Carat labels captopril) nanoclusters occurring at low pH and yielding a product with a much increased luminescence quantum yield which we have identified as Au(23)Capt(17). We applied a simple method of treatment with HCl to accomplish this transformation and we characterized the absorption and emission of the newly created ligated nanoclusters as well as their morphology. Based on DFT calculations we show which Au nanocluster size transformations can lead to highly luminescent species such as Au(23)Capt(17).
机译:最近Thiolate-protected黄金发光机制由于他们引起了相当大的关注尺度依赖的发光特征长寿命,斯托克斯位移大。这样的纳米特性的优化发光量子产率仍然是一个挑战。非盟(25)上校(18)(克拉标签卡托普利)发光机制发生在低pH值和收益率产品更增加了发光量子产率,我们已经确定了非盟(23)上校(17)。治疗盐酸来完成这一任务转换和我们的特点新创建的吸收和发射结扎制备以及它们的形态。基于DFT计算我们展示盟纳米尺寸转换会导致高发光物种等Au(23岁)回响(17)。

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