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封装银(I)簇的吡咯笼的亲银相互作用、灵活性和动力学

Argentophilic Interactions, Flexibility, and Dynamics of Pyrrole Cages Encapsulating Silver(I) Clusters.

作者信息

Trzaskowski Bartosz, Martínez Juan Pablo, Sarwa Aleksandra, Szyszko Bartosz, Goddard William A

机构信息

Centre of New Technologies, University of Warsaw, 2C Banacha Street, 02-097 Warszawa, Poland.

Faculty of Chemistry, University of Wrocław, 14 F. Joliot-Curie Street, 50-387 Wrocław, Poland.

出版信息

J Phys Chem A. 2024 May 2;128(17):3339-3350. doi: 10.1021/acs.jpca.4c01464. Epub 2024 Apr 23.

Abstract

Recently, pyrrole cages have been synthesized that encapsulate ion pairs and silver(I) clusters to form intricate supramolecular capsules. We report here a computational analysis of these structures using density functional theory combined with a semiempirical tight-binding approach. We find that for neutral pyrrole cages, the Gibbs free energies of formation provide reliable predictions for the ratio of bound ions. For charged pyrrole cages, we find strong argentophilic interactions between Ag ions on the basis of the calculated bond indices and molecular orbitals. For the cage with the Ag cluster, we find two minimum-geometry conformations that differ by only 6.5 kcal/mol, with an energy barrier <1 kcal/mol, suggesting a very flexible structure as indicated by molecular dynamics. The predicted energies of formation of ⊂ ( = 1-5) cryptands provide low energy barriers of formation of 5-20 kcal/mol for all cases, which is consistent with the experimental data. Furthermore, we also examined the structural variability of mixed-valence silver clusters to test whether additional geometrical conformations inside the organic cage are thermodynamically accessible. In this context, we show that the time-dependent density functional theory UV-vis spectra may potentially serve as a diagnostic probe to characterize mixed-valence and geometrical configurations of silver clusters encapsulated into cryptands.

摘要

最近,已合成出能包封离子对和银(I)簇以形成复杂超分子胶囊的吡咯笼。我们在此报告使用密度泛函理论结合半经验紧束缚方法对这些结构进行的计算分析。我们发现,对于中性吡咯笼,生成的吉布斯自由能为结合离子的比例提供了可靠的预测。对于带电荷的吡咯笼,基于计算出的键指数和分子轨道,我们发现银离子之间存在强烈的亲银相互作用。对于带有银簇的笼,我们发现了两种最小几何构象,它们仅相差6.5千卡/摩尔,能垒<1千卡/摩尔,这表明如分子动力学所示结构非常灵活。对于⊂( = 1 - 5)穴状配体的预测生成能量在所有情况下都提供了5 - 20千卡/摩尔的低形成能垒,这与实验数据一致。此外,我们还研究了混合价银簇的结构变异性,以测试有机笼内是否存在其他热力学可及的几何构象。在此背景下,我们表明含时密度泛函理论紫外可见光谱可能潜在地用作诊断探针,以表征包封在穴状配体内的银簇的混合价和几何构型。

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