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Cluster-seeded synthesis of doped CdSe:Cu_4 quantum dots

机译:掺杂CdSe:Cu_4量子点的团簇合成

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We report here a method for synthesizing CdSe quantum dots (QDs) containing copper such that each QD is doped with four copper ions. The synthesis is a derivative of the cluster-seed method, whereby organometallic clusters act as nucleation centers for quantum dots. The method is tolerant of the chemical identity of the seed; as such, we have doped four copper ions into CdSe QDs using [Na(H_2O)_3]_2[Cu_4(SPh) _6] as a cluster seed. The controlled doping allows us to monitor the photophysical properties of guest ions with X-ray spectroscopy, specifically XANES and EXAFS at the copper K-edge. These data reveal that copper can capture both electrons and holes from photoexcited CdSe QDs. When the dopant is oxidized, photoluminescence is quenched and the copper ions translocate within the CdSe matrix, which slows the return to an emissive state.
机译:我们在这里报告了一种合成含铜的CdSe量子点(QD)的方法,以便每个QD都掺杂有四个铜离子。合成是团簇-种子方法的一种衍生物,其中有机金属团簇充当量子点的成核中心。该方法可耐受种子的化学特性。因此,我们使用[Na(H_2O)_3] _2 [Cu_4(SPh)_6]作为簇种子将四个铜离子掺杂到CdSe QD中。受控的掺杂使我们能够使用X射线光谱法(特别是在铜K边缘的XANES和EXAFS)监控来宾离子的光物理性质。这些数据表明,铜可以捕获光激发的CdSe量子点中的电子和空穴。当掺杂剂被氧化时,光致发光被淬灭,并且铜离子在CdSe基质内移位,这减慢了返回发光状态的速度。

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