首页> 美国卫生研究院文献>Chemical Science >Atomically precise Au144(SR)60 nanoclusters (R = Et Pr) are capped by 12 distinct ligand types of 5-fold equivalence and display gigantic diastereotopic effects
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Atomically precise Au144(SR)60 nanoclusters (R = Et Pr) are capped by 12 distinct ligand types of 5-fold equivalence and display gigantic diastereotopic effects

机译:原子精确的Au144(SR)60纳米簇(R = EtPr)被5倍当量的12种不同配体类型所覆盖并显示出巨大的非对位效应

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摘要

For two decades, Au144(SR)60 has been one of the most studied and used thiolate (SR) protected gold nanoclusters. In many ways, however, it proved to be a challenging and elusive case, also because of the difficulties in solving its structure by single-crystal X-ray crystallography. We used very short thiols and could prepare Au144(SC2H5)60 and Au144(SC3H7)60 in a very pure form, which was confirmed by UV-vis absorption spectroscopy and very regular electrochemistry patterns. Inductively coupled plasma and electrospray ionization mass spectrometries gave definite proof of the Au144(SR)60 stoichiometry. High-resolution 1D and 2D NMR spectroscopy in the solution phase provided the result of assessing the presence of 12 ligand types in exactly the same amount (5-fold equivalence). Equally important, we found that the two protons belonging to each methylene group along the thiolate chain are diastereotopic. For the α-CH2 protons, the diastereotopic effect can be indeed gigantic, as it reaches chemical-shift differences of 2.9 ppm. DFT calculations provided insights into the relationship between structure and NMR results. In particular, the 12 ligand types and corresponding diastereotopic effects may be explained by considering the presence of C–H···S hydrogen bonds. These results thus provide fundamental insights into the structure of the thiolate layer capping this long-studied gold nanocluster.
机译:二十年来,Au144(SR)60一直是研究最多的硫醇盐(SR)保护的金纳米团簇之一。然而,从很多方面来看,这也证明是一个具有挑战性和难以捉摸的情况,这还因为难以通过单晶X射线晶体学解决其结构。我们使用了非常短的硫醇,可以制备非常纯净的Au144(SC2H5)60和Au144(SC3H7)60,这通过紫外可见吸收光谱法和非常规则的电化学模式得到了证实。电感耦合等离子体和电喷雾电离质谱法给出了Au144(SR)60化学计量的确定证据。溶液相的高分辨率1D和2D NMR光谱提供了评估完全相同数量(5倍当量)的12种配体类型的存在的结果。同样重要的是,我们发现硫醇盐链上每个亚甲基的两个质子都是非对映体。对于α-CH2质子,非对映异构效应的确可以是巨大的,因为其化学位移差异为2.9 ppm。 DFT计算提供了对结构与NMR结果之间关系的深入了解。特别是,可以通过考虑C–H···S氢键的存在来解释12种配体类型和相应的非对映异构作用。因此,这些结果为加盖了这个长期研究的金纳米团簇的硫醇盐层的结构提供了基本的见识。

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