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光致变色[Pd 二噻吩乙烯]配位笼中光开关和客体结合的机制相互作用。

Mechanistic Interplay between Light Switching and Guest Binding in Photochromic [PdDithienylethene] Coordination Cages.

机构信息

Faculty of Chemistry and Chemical Biology , TU Dortmund University , Otto-Hahn-Straße 6 , 44227 Dortmund , Germany.

Department of Chemistry and Chemical Engineering , Chalmers University of Technology , 41296 , Göteborg , Sweden.

出版信息

J Am Chem Soc. 2019 Feb 6;141(5):2097-2103. doi: 10.1021/jacs.8b11872. Epub 2019 Jan 22.

Abstract

Photochromic [PdL] coordination cages based on dithienylethene (DTE) ligands L allow triggering guest uptake and release by irradiation with light of different wavelengths. The process involves four consecutive electrocyclic reactions to convert all chromophores between their open and closed photoisomeric forms. So far, guest affinity of the fully switched species was elucidated, but mechanistic details concerning the intermediate steps remained elusive. Now, a new member of the DTE cage family allows unprecedented insight into the interplay between photoisomerization steps and guest location inside/outside the cavity. Therefore, the intrinsic chirality of the DTE backbones was used as reporter for monitoring the fate of a chiral guest. In its "open" photoisomeric form ( o-L, [Pd( o-L)] = o-C), the C-symmetric DTE chromophore quickly converts between energetically degenerate P and M helical conformations. After binding homochiral 1 R-( -) or 1 S-( +) camphor sulfonate ( R-CSA or S-CSA), guest-to-host chirality transfer was observed via a circular dichroism (CD) signal for the cage-centered absorption. Irradiating the R/S-CSA@ o-C host-guest complexes at 313 nm produced configurationally stable "closed" photoisomers, thus locking the induced chirality with an enantiomeric excess close to 25%. This value (corresponding to chiral induction for one out of four ligands), together with DOSY NMR, ion mobility mass spectrometry, and X-ray structure results, shows that closure of the first photoswitch is sufficient to expel the guest from the cavity.

摘要

基于二噻吩乙烯 (DTE) 配体 L 的光致变色 [PdL] 配位笼允许通过不同波长光的辐照触发客体的吸收和释放。该过程涉及四个连续的电环化反应,将所有生色团在其开环和闭环光异构体形式之间转换。到目前为止,已阐明了完全切换物种的客体亲和力,但关于中间步骤的机制细节仍难以捉摸。现在,DTE 笼家族的一个新成员允许以前所未有的方式深入了解光致异构化步骤和客体在腔内外位置之间的相互作用。因此,DTE 骨架的固有手性被用作监测手性客体命运的报告器。在其“开”光致异构形式 (o-L,[Pd(o-L)]=o-C) 中,C 对称的 DTE 生色团在能量简并的 P 和 M 螺旋构象之间快速转换。在结合同手性 1R-( -) 或 1S-( +)樟脑磺酸盐 (R-CSA 或 S-CSA) 后,通过笼中心吸收的圆二色性 (CD) 信号观察到客体到主体的手性转移。在 313nm 下辐照 R/S-CSA@o-C 主体-客体配合物会产生构型稳定的“闭”光异构体,从而以接近 25%的对映体过量锁定诱导的手性。该值(对应于四个配体之一的手性诱导),连同 DOSY NMR、离子淌度质谱和 X 射线结构结果,表明第一个光开关的闭合足以将客体从腔中排出。

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