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首页> 外文期刊>Angewandte Chemie >The Origin of the Photoluminescence Enhancement of Gold-Doped Silver Nanoclusters: The Importance of Relativistic Effects and Heteronuclear Gold-Silver Bonds
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The Origin of the Photoluminescence Enhancement of Gold-Doped Silver Nanoclusters: The Importance of Relativistic Effects and Heteronuclear Gold-Silver Bonds

机译:金掺杂银纳米团簇的光致发光的起源:相对论效应和异核金银键的重要性

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The weak photoluminescence of silver nanoclusters prevents their broad application as luminescent nanomaterials. Recent experiments, however, have shown that gold doping can significantly enhance the photoluminescence intensity of Ag-29 nanoclusters but the molecular and physical origins of this effect remain unknown. Therefore, we have computationally explored the geometric and electronic structures of Ag-29 and gold-doped Ag29-xAux (x=1-5) nanoclusters in the S-0 and S-1 states. We found that 1)relativistic effects that are mainly due to the Au atoms play an important role in enhancing the fluorescence intensity, especially for highly doped Ag26Au3, Ag25Au4, and Ag24Au5, and that 2)heteronuclear Au-Ag bonds can increase the stability and regulate the fluorescence intensity of isomers of these gold-doped nanoclusters. These novel findings could help design doped silver nanoclusters with excellent luminescence properties.
机译:银纳米能器的弱光致发光可防止其广泛的应用作为发光纳米材料。 然而,最近的实验表明,金掺杂可以显着提高Ag-29纳米能的光致发光强度,但这种效果的分子和物理起源仍然未知。 因此,我们在计算上探索了S-0和S-1状态中的Ag-29和金掺杂的Ag29-Xaux(X = 1-5)纳米细胞的几何和电子结构。 我们发现,主要是由于Au原子引起的相对论效应在增强荧光强度方面发挥着重要作用,特别是对于高掺杂的Ag26au3,Ag25au4和Ag24au5,并且2)HeterOnucol Au-Ag键可以增加稳定性和 调节这些金掺杂纳米/蛋白的异构体的荧光强度。 这些新颖的发现可以帮助设计具有优异发光性能的掺杂银纳米团簇。

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