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在一个[2]索烃中定义的两类并列电荷转移相互作用。

Two classes of alongside charge-transfer interactions defined in one [2]catenane.

作者信息

Nygaard Sune, Hansen Stinne W, Huffman John C, Jensen Frank, Flood Amar H, Jeppesen Jan O

机构信息

Department of Physics and Chemistry, University of Southern Denmark, Odense University, Campusvej 55, 5230, Odense M, Denmark.

出版信息

J Am Chem Soc. 2007 Jun 13;129(23):7354-63. doi: 10.1021/ja069047w. Epub 2007 May 18.

Abstract

A [2]catenane, which incorporates hydroquinone (HQ) and a sterically bulky tetrathiafulvalene (TTF) into a bismacrocycle, has been designed to probe the alongside charge-transfer (CT) interactions taking place between a TTF unit and one of the bipyridinium moieties in the tetracationic cyclophane cyclobis(paraquat-p-phenylene) (CBPQT4+). A template-directed strategy employs the HQ unit as the primary template for formation of the tetracationic cyclophane CBPQT4+, affording the desired [2]catenane structure but as an uncharacteristic green solid. The X-ray crystal structure and detailed 13C NMR assignments have identified a stereoselective preference for catenation about the cis isomer. The 1H NMR spectroscopy, electrochemistry, and X-ray crystallography all confirm that the CBPQT4+ cyclophane encircles the HQ unit, thereby defining a structure which would normally determine a red color. The visible-NIR region of the absorption spectrum displays a band at approximately 740 nm that is unambiguously assigned to a TTF --> CBPQT4+ CT transition on the basis of resonance Raman spectroscopy using 785 nm excitation. The profile of the CT band changes depending on the ratio of the cis- to trans-TTF isomers in the [2]catenane for which the molar absorptivity of each isomer is estimated to be significantly different at epsilon max = 380 and 3690 M-1 cm-1, respectively. Molecular modeling studies confirmed that the observed difference in the absorption spectroscopic profile can be accounted for by both a better overlap of the HOMO(TTF) and LUMO+1(CBPQT4+) as well as a more stable face-to-face (pi...pi) conformation in the trans isomer compared to the edge-to-face cis isomer of the [2]catenane. The latter is arranged for pi-orbital overlap through the sulfur atoms of the TTF unit, thereby defining an [Spi...pi] interaction.

摘要

一种[2]索烃已被设计出来,它将对苯二酚(HQ)和空间位阻较大的四硫富瓦烯(TTF)并入双大环中,用于探究四阳离子环番环双(百草枯 - 对亚苯基)(CBPQT4 +)中TTF单元与其中一个联吡啶鎓部分之间发生的沿边电荷转移(CT)相互作用。一种模板导向策略将HQ单元用作形成四阳离子环番CBPQT4 +的主要模板,得到了所需的[2]索烃结构,但却是一种不寻常的绿色固体。X射线晶体结构和详细的13C NMR归属确定了对顺式异构体成索的立体选择性偏好。1H NMR光谱、电化学和X射线晶体学都证实CBPQT4 +环番环绕着HQ单元,从而确定了一种通常会呈现红色的结构。吸收光谱的可见 - 近红外区域在约740 nm处显示出一个吸收带,基于使用785 nm激发的共振拉曼光谱,该吸收带明确归属于TTF→CBPQT4 +的CT跃迁。CT带的轮廓根据[2]索烃中顺式 - 反式TTF异构体的比例而变化,据估计每种异构体的摩尔吸光系数在εmax分别为380和3690 M-1 cm-1时显著不同。分子建模研究证实,观察到的吸收光谱轮廓差异可以通过HOMO(TTF)和LUMO + 1(CBPQT4 +)更好的重叠以及与[2]索烃的边对面顺式异构体相比,反式异构体中更稳定的面对面(π...π)构象来解释。后者通过TTF单元的硫原子进行π轨道重叠排列,从而定义了一种[Sπ...π]相互作用。

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