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The ligand effect on the isomer stability of Au-24(SR)(20) clusters

机译:配体的异构体稳定性的影响Au-24 (SR)(20)集群

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摘要

A key challenge in nanocluster research in particular and nanoscience in general is structure prediction for known compositions. Usually a simple ligand such as a methyl group is used to replace complex ligands in structure prediction of ligand-protected nanoclusters. However, how ligands dictate the energy landscape of such a cluster remains unclear. Here we elucidate the role of the ligand effect on the isomer stability of Au-24(SR)(20) nanoclusters by computing the relative energy of two isomers (one from the experiment, denoted as the "J" isomer; the other is the best theoretical model, denoted as the "P" isomer) of Au-24(SR)(20) with dispersion-corrected density functional theory. We find that when R = -CH3, the two isomers are equally stable (within 0.13 eV), but for R = -CH2CH2Ph the P isomer is more stable by 1.6 eV and for R = -CH2Ph-Bu-t the J isomer is more stable by 1.0 eV. Partition of the total energy into DFT and vdW contributions indicates that the higher stability of the P isomer in the case of R = -CH2CH2Ph stems from the stronger vdW interactions among -CH2CH2Ph groups, while the higher stability of the J isomer in the case of R = -CH2Ph-Bu-t is due to its better capacity to respond to the steric effect of the larger -CH2Ph-Bu-t groups. This finding confirms that the ligand plays a crucial role in dictating the isomer stability.
机译:纳米研究的一个关键挑战特别和纳米科学对已知的成分结构预测。通常一个简单的配体,如甲基代替复杂的配体结构预测ligand-protected发光机制。然而,如何配体决定能源景观这种集群的尚不清楚。阐明配体的作用影响异构体的稳定性Au-24 (SR)(20)发光机制计算两个同分异构体的相对能量(一个从实验中,表示“J”异构体;另一种是最好的理论模型,表示的“P”异构体)Au-24 (SR) (20)dispersion-corrected密度泛函理论。我们发现,当R = ch3,两个同分异构体同样稳定(0.13 eV),但R =-CH2CH2Ph P异构体是更稳定的1.6 eV和R = -CH2Ph-Bu-t J异构体更稳定的1.0 eV。表明,就是secu * tanu减去vdW DFT和贡献P的高稳定异构体的R=就是secu * tanu减去vdW -CH2CH2Ph源于越强-CH2CH2Ph团体间的互动,而J的高稳定异构体的R= -CH2Ph-Bu-t由于其更好的能力应对更大的立体效应-CH2Ph-Bu-t组。规定的配位体起着至关重要的作用异构体的稳定性。

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