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硫代修饰的三角胺,一类具有高结构动力学的新型手性大环化合物。

Thio-modified trianglimines, a novel group of chiral macrocyclic compounds of high structural dynamics.

作者信息

Prusinowska Natalia, Czapik Agnieszka, Szymkowiak Joanna, Kwit Marcin

机构信息

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, Poznan, 61 614, Poland.

Faculty of Science, Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, BC, V6T 1Z1, Canada.

出版信息

Sci Rep. 2025 Jan 6;15(1):890. doi: 10.1038/s41598-025-85179-9.

Abstract

The embellishing of the macrocycle core with sulfur substituents of varied sterical requirements changes the structural dynamics of chiral, triangular polyimines. Despite their formal high symmetry, these compounds adopt diverse conformations, in which the macrocycle core represents a non-changeable unit. DFT calculations reveal that the mutual arrangement of sulfur-containing substituents is controlled mainly by sterical interactions. The presence of sulfur atoms affects the chiroptical properties of these compounds and causes a red shift of respective absorption bands compared to the basic trianglimine. Unexpectedly, the aromatic fragments attached to the sulfur atom have less impact on ECD spectra, visible only in particular spectral regions. Such a possibility to adapt various conformations is also seen in the crystalline phase; however, a stiff basic unit - the triangular macrocycle core - caused macrocycles' self-assembly into columnar-like aggregates. In the crystal lattice, around the macrocycle having bulky SCPh groups, a space filled with solvent is formed; however, the macrocycle's internal cavity is closed and unavailable for guest molecules. Titration of the solutions of basic SBn-substituted imine and amine macrocycles by AgOTf results in significant changes in the ECD spectra, confirming possible binding interactions between macrocycle and metal cations.

摘要

用具有不同空间需求的硫取代基修饰大环核心会改变手性三角形聚亚胺的结构动力学。尽管这些化合物形式上具有高对称性,但它们呈现出多种构象,其中大环核心是一个不可改变的单元。密度泛函理论计算表明,含硫取代基的相互排列主要受空间相互作用控制。硫原子的存在会影响这些化合物的手性光学性质,并导致与基本三角亚胺相比相应吸收带发生红移。出乎意料的是,连接在硫原子上的芳族片段对电子圆二色光谱的影响较小,仅在特定光谱区域可见。在结晶相中也可以看到这种适应各种构象的可能性;然而,一个刚性的基本单元——三角形大环核心——导致大环自组装成柱状聚集体。在晶格中,在具有庞大SCPh基团的大环周围形成了一个充满溶剂的空间;然而,大环的内腔是封闭的,客体分子无法进入。用AgOTf滴定碱性SBn取代的亚胺和胺大环的溶液会导致电子圆二色光谱发生显著变化,证实了大环与金属阳离子之间可能存在的结合相互作用。

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