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[Ag67(SPhMe2)32(PPh3)8]3+: Synthesis, Total Structure, and Optical Properties of a Large Box-Shaped Silver Nanocluster

机译:[Ag67(SPhMe2)32(PPh3)8] 3+:大型盒形银纳米簇的合成,总结构和光学性质

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摘要

Engineering the surface ligands of metal nanoparticles is critical in designing unique arrangements of metal atoms. Here, we report the synthesis and total structure determination of a large box-shaped Ag67 nanocluster (NC) protected by a mixed shell of thiolate (2,4-dimethylbenzenethiolate, SPhMe2) and phosphine (triphenylphosphine, PPh3) ligands. Single crystal X-ray diffraction (SCXRD) and electrospray ionization mass spectrometry (ESI-MS) revealed the cluster formula to be [Ag67(SPhMe2)32(PPh3)8]3+. The crystal structure shows an Ag23 metal core covered by a layer of Ag44S32P8 arranged in the shape of a box. The Ag23 core was formed through an unprecedented centered cuboctahedron, i.e., Ag13, unlike the common centered Ag13 icosahedron geometry. Two types of ligand motifs, eight AgS3P and eight bridging thiols, were found to stabilize the whole cluster. The optical spectrum of this NC displayed highly structured multiple absorption peaks. The electronic structure and optical spectrum of Ag67 were computed using time-dependent density functional theory (TDDFT) for both the full cluster [Ag67(SPhMe2)32(PPh3)8]3+ and a reduced model [Ag67(SH)32(PH3)8]3+. The lowest metal-to-metal transitions in the range 500–800 nm could be explained by considering the reduced model that shows almost identical electronic states to 32 free electrons in a jellium box. The successful synthesis of the large box-shaped Ag67 NC facilitated by the combined use of phosphine and thiol paves the way for synthesizing other metal clusters with unprecedented shapes by judicious choice of thiols and phosphines.
机译:工程化金属纳米粒子的表面配体对于设计​​金属原子的独特排列至关重要。在这里,我们报告了由硫醇盐(2,4-二甲基苯硫醇盐,SPhMe2)和膦(三苯基膦,PPh3)配体的混合壳保护的大盒形Ag67纳米簇(NC)的合成和总结构测定。单晶X射线衍射(SCXRD)和电喷雾电离质谱(ESI-MS)显示,簇式为[Ag67(SPhMe2)32(PPh3)8] 3+。晶体结构显示出一个Ag23金属核,该金属核被一层以盒子形状排列的Ag44S32P8覆盖。与普通的中心Ag13二十面体几何形状不同,Ag23芯是通过空前的中心八面体即Ag13形成的。发现两种类型的配体基序,八个AgS3P和八个桥联硫醇,可以稳定整个簇。该NC的光谱显示出高度结构化的多个吸收峰。使用时变密度泛函理论(TDDFT)计算了整个簇[Ag67(SPhMe2)32(PPh3)8] 3+和简化模型[Ag67(SH)32(PH3)的Ag67的电子结构和光谱)8] 3+。可以通过考虑还原模型来解释500-800 nm范围内最低的金属到金属跃迁,该简化模型显示了与一个Jbox盒中的32个自由电子几乎相同的电子态。通过磷化氢和硫醇的组合使用,成功地成功合成了大盒形Ag67 NC,这为通过明智地选择硫醇和磷化氢来合成具有空前形状的其他金属团簇铺平了道路。

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