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中性金团簇结构的新视角:中空填充的金笼子。

A new look at the structure of the neutral Au cluster: hollow filled golden cage.

作者信息

Nhat Pham Vu, Si Nguyen Thanh, Fielicke André, Kiselev Vitaly G, Nguyen Minh Tho

机构信息

Department of Chemistry, Can Tho University, Can Tho, Vietnam.

Molecular and Materials Modeling Laboratory, Can Tho University, Can Tho, Vietnam.

出版信息

Phys Chem Chem Phys. 2023 Mar 29;25(13):9036-9042. doi: 10.1039/d2cp05422a.

Abstract

The geometry of the neutral Au gold cluster was probed by a combination of quantum chemical calculations and far-infrared multiple photon dissociation (FIR-MPD) spectroscopy of a Kr messenger complex. Two low-lying isomers are identified to potentially contribute to the experimental IR spectrum, both being derived from a star-like Au structure upon capping with one extra Au atom either inside (18_1) or outside (18_5) the star. In particular, the present detection of structure 18_1 by DFT computations where a golden cage encapsulates an endohedral Au atom, is intriguing as a stable core-shell isomer has, to our knowledge, never been found before for such small neutral gold clusters. DFT and local coupled-cluster (DLPNO and PNO-CCSD(T)) computations indicate that both Au isomers are close to each other, within ∼3 kcal mol, on the energy scale. Although the exact energy ordering is again method-dependent and remains, at present, inconclusive, the most striking spectral signatures of both isomers are related to vibrational modes localized at atoms capping the inner pentaprism sub-structure that result in prominent peaks centered at ∼80 cm, close to the most prominent experimental feature found at 78 cm. The calculated IR spectra of both core-shell and hollow isomers are very similar to each other and both agree comparably well with the experimental FIR-MPD spectra of the AuKr complexes.

摘要

通过量子化学计算和氪传递复合物的远红外多光子解离(FIR-MPD)光谱相结合的方法,对中性金团簇的几何结构进行了探测。确定了两种低能异构体可能对实验红外光谱有贡献,它们均源自一种星形金结构,在星形内部(18_1)或外部(18_5)额外添加一个金原子进行封端。特别是,通过密度泛函理论(DFT)计算检测到结构18_1,其中一个金笼子包裹着一个内包金原子,据我们所知,对于如此小的中性金团簇,以前从未发现过稳定的核壳异构体,这很有趣。DFT和局部耦合簇(DLPNO和PNO-CCSD(T))计算表明,在能量尺度上,两种金异构体彼此接近,相差约3千卡/摩尔。虽然确切的能量排序再次依赖于方法,目前尚无定论,但两种异构体最显著的光谱特征都与位于内五棱柱子结构封端原子处的振动模式有关,这些振动模式导致在~80厘米处出现突出峰,接近在78厘米处发现的最突出的实验特征。核壳异构体和空心异构体的计算红外光谱彼此非常相似,并且与金氪复合物的实验FIR-MPD光谱都相当吻合。

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