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供体-受体(D-A)取代聚炔发色团:通过改变乙炔间隔物的长度来调节其光电性质。

Donor-acceptor (D-A)-substituted polyyne chromophores: modulation of their optoelectronic properties by varying the length of the acetylene spacer.

机构信息

Laboratorium für Organische Chemie, ETH Zürich, Hönggerberg, HCI, 8093 Zurich (Switzerland), Fax: (+41) 44-632-1109, Fax: (+41) 44-632-1475.

出版信息

Chemistry. 2013 Sep 16;19(38):12693-704. doi: 10.1002/chem.201301642. Epub 2013 Aug 6.

Abstract

A series of donor-acceptor-substituted alkynes, 2 a-f, was synthesized in which the length of the π-conjugated polyyne spacer between the N,N-diisopropylanilino donor and the 1,1,4,4-tetracyanobuta-1,3-diene (TCBD) acceptor was systematically changed. The effect of this structural change on the optoelectronic properties of the molecules and, ultimately, their third-order optical nonlinearity was comprehensively investigated. The branched N,N-diisopropyl groups on the anilino donor moieties combined with the nonplanar geometry of 2 a-f imparted exceptionally high solubility to these chromophores. This important property allowed for performing INADEQUATE NMR measurements without (13) C labeling, which, in turn, resulted in a complete assignment of the carbon skeleton in chromophores 2 a-f and the determination of the (13) C-(13) C coupling constants. This body of data provided unprecedented insight into characteristic (13) C chemical shift patterns in push-pull-substituted polyynes. Electrochemical and UV/Vis spectroscopic studies showed that the HOMO-LUMO energy gap decreases with increasing length of the polyyne spacer, while this effect levels off for spacers with more than four acetylene units. The third-order optical nonlinearity of this series of molecules was determined by measuring the rotational averages of the third-order polarizabilities (γrot ) by degenerate four-wave mixing (DFWM). These latter studies revealed high third-order optical nonlinearities for the new chromophores; most importantly, they provided fundamental insight into the effect of the conjugated spacer length in D-A polyynes, that can be exploited in the future design of suitable charge-transfer chromophores for applications in optoelectronic devices.

摘要

一系列供体-受体-取代炔烃 2a-f 被合成出来,其中 N,N-二异丙基苯胺供体和 1,1,4,4-四氰基丁二烯(TCBD)受体之间的聚炔间隔基的长度被系统地改变。这种结构变化对分子的光电性质,以及最终对它们的三阶光学非线性的影响进行了全面的研究。苯胺供体部分上的支化 N,N-二异丙基基团与 2a-f 的非平面几何形状相结合,赋予这些生色团极高的溶解度。这种重要的性质使得可以在不进行(13)C 标记的情况下进行 INADEQUATE NMR 测量,这反过来又导致对生色团 2a-f 的碳骨架进行了完整的分配,并确定了(13)C-(13)C 偶合常数。这些数据提供了对推挽取代聚炔中特征(13)C 化学位移模式的前所未有的深入了解。电化学和紫外/可见光谱研究表明,HOMO-LUMO 能隙随聚炔间隔基长度的增加而减小,而对于具有超过四个乙炔单元的间隔基,这种效应趋于平稳。通过测量简并四波混频(DFWM)的三阶极化率(γrot)的旋转平均值来确定该系列分子的三阶光学非线性。这些研究揭示了新生色团具有高的三阶光学非线性;最重要的是,它们为 D-A 聚炔中共轭间隔基长度的影响提供了基本的见解,这可以在未来设计适用于光电设备的合适的电荷转移生色团时加以利用。

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