分子笼中离子结合的周期性趋势:Mn+-[2.2.2]-苯并氯配合物在气相中的作用。

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL
The Journal of Physical Chemistry A Pub Date : 2025-04-24 Epub Date: 2025-03-24 DOI:10.1021/acs.jpca.5c00314
Chin Lee, Kendrew Au, Casey D Foley, Cole D Allen, Susan B Rempe, Pengyu Ren, Edwin L Sibert, Timothy S Zwier
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引用次数: 0

摘要

隐域是一种三维分子笼,可以选择性地将阳离子结合在其内部,根据它们的大小和电荷状态来区分原子阳离子。我们详细研究了Mn+ = Na+, K+, Rb+, Ca2+, Sr2+和Ba2+的Mn+-[2.2.2]-苯并crypt (BzCrypt)配合物在气相低温冷却条件下的IR和UV光谱和结构,以识别在没有热,溶剂或填料效应的情况下的周期性趋势。这项工作建立在比较K+-BzCrypt和Ba2+-BzCrypt气相结构的初步报告的基础上(Foley et al., J. Phys.)。化学。(A 2023, 127, 6227),其中离子的大小合适,可以最佳地装入笼中。随着离子大小和电荷的变化,紫外光谱的电子源位移超过1000 cm-1,具有强烈的电子源和适度的低频frank - condon活性,这是由离子响应芳族发色团的电子激发而产生的受限运动引起的。在红外光谱中,嵌入离子在烷基CH拉伸红外光谱(2800-3000 cm-1)中产生了显著的位移和非谐波耦合,这反映了隐笼改变形状以最大限度地与不同大小和电荷的离子结合的方式。我们采用CH拉伸跃迁流形的非调和局部模态模型来分配实验观察到的结构。所有六个离子在笼内主要由三个二醚桥中的六个O原子结合,并与两个叔胺二次结合。在1000 ~ 1700 cm-1区域的中红外光谱主要是带有明显的C-O拉伸特征的跃迁。我们建立了CO拉伸振动的局域模式模型,该模型的频率随Mn+电荷状态的变化而显著变化,但只要主键是与所有六个O原子结合,则对笼形的响应就很弱。在对构象势能面进行完整搜索的基础上,我们跟踪了16个低能构象的计算相对能作为嵌入阳离子的函数。指定的结构要么是Mn+-BzCrypt复合物的计算全局最小值,要么是其最接近的竞争对手。当小于最优值的阳离子(Na+, Ca2+, Sr2+)结合在隐笼内时,通过将苯环从平行的最优构型扭曲到几乎垂直于N··N轴,可以显著缩短端到端N··N距离(K+- bzcrypt为6.06,Ba2+- bzcrypt为5.96 Å),将观察到的Ca2+, Na+-和Sr2+- bzcrypt配合物的N··N距离降低到5.24,5.31和5.47 Å。最后,Rb+具有与K+-BzCrypt相同的结构,其紫外和红外光谱与后者的配合物非常相似。因此,[2.2.2]-苯并氯基笼可以容纳稍大的离子而没有明显的结构重排。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Periodic Trends of Ions Bound in Molecular Cages: Mn+-[2.2.2]-Benzocryptand Complexes in the Gas Phase.

Cryptands are three-dimensional molecular cages that selectively bind cations in their interiors, discriminating between atomic cations based on their size and charge state. We report a detailed study of the IR and UV spectroscopy and structures of Mn+-[2.2.2]-benzocryptand (BzCrypt) complexes with Mn+ = Na+, K+, Rb+, Ca2+, Sr2+, and Ba2+ under cryo-cooled conditions in the gas phase, to discern periodic trends in the absence of thermal, solvent, or packing effects. This work builds off an initial report that compared the gas phase structures of K+-BzCrypt and Ba2+-BzCrypt (Foley et al., J. Phys. Chem. A 2023, 127, 6227), where the ions are of the right size to fit inside the cage optimally. The electronic origins of the UV spectra shift by more than 1000 cm-1 with ion size and charge, with strong electronic origins and modest low frequency Franck-Condon activity arising from the confined motion of the ion in response to electronic excitation of the aromatic chromophore. In the infrared, the embedded ion produces significant shifts and anharmonic couplings in the alkyl CH stretch infrared spectrum (2800-3000 cm-1) that reflect the way in which the cryptand cage changes its shape to maximize its binding with ions of different size and charge. We employ an anharmonic local mode model of the manifold of CH stretch transitions to assign the experimentally observed structures. All six ions are bound inside the cage primarily by the six O atoms in the three diether bridges, with secondary binding to the two tertiary amines. Mid-IR spectra in the 1000-1700 cm-1 region are dominated by transitions that carry significant C-O stretch character. We develop a local mode model of the CO stretch vibrations whose frequencies are shown to vary significantly with the Mn+ charge state but respond only weakly to the conformation of the cage as long as primary binding is to all six O atoms. Based on a complete search of the conformational potential energy surface, we track the calculated relative energies of a set of 16 low-energy conformations as a function of the imbedded cation. The assigned structures are either the calculated global minima for that Mn+-BzCrypt complex or its closest competitor. When cations that are smaller than optimal are bound inside the cryptand cage (Na+, Ca2+, Sr2+), the 'end-to-end' N···N distance is shortened significantly from its optimal value (6.06 in K+-BzCrypt and 5.96 Å in Ba2+-BzCrypt) by twisting the phenyl ring from its parallel optimal configuration to nearly perpendicular to the N···N axis, reducing the N···N distance to 5.24, 5.31, and 5.47 Å in the observed Ca2+-, Na+-, and Sr2+-BzCrypt complexes. Finally, Rb+ takes up the same structure as in K+-BzCrypt, with both UV and IR spectra that are closely similar to those in the latter complex. Thus, the [2.2.2]-benzocryptand cage accommodates a slightly larger ion without significant structural rearrangement.

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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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