Laboratorium für Organische Chemie, ETH Zürich, Hönggerberg, HCI, CH-8093 Zürich, Switzerland.
Chem Commun (Camb). 2010 Mar 28;46(12):1994-2006. doi: 10.1039/b926601a. Epub 2010 Feb 17.
The development of a unique class of non-planar push-pull chromophores by means of [2 + 2] cycloaddition, followed by cycloreversion, of electron-deficient olefins, such as tetracyanoethene (TCNE), 7,7,8,8-tetracyanoquinodimethane (TCNQ) and 2,3,5,6-tetrafluoro-7,7,8,8-tetracyanoquinodimethane (F(4)-TCNQ), as well as dicyanovinyl (DCV) and tricyanovinyl (TCV) derivatives, to donor-substituted alkynes is explored in this feature article. This high-yielding, "click-chemistry"-type transformation with acetylenic dendrimers affords dendritic electron sinks capable of multiple electron uptake within a narrow potential range. An [AB]-type oligomer with a dendralene backbone was synthesised by a one-pot, multi-component cascade reaction of polyyne oligomers with TCNE and tetrathiafulvalene (TTF). In most cases, the resulting chromophores feature intense intramolecular charge-transfer bands extending far into the near infrared region and some of them display high third-order optical nonlinearities. Despite substitution with strong donors, the electron-withdrawing moieties in the new chromophores remain potent acceptors and a number of them display positive first reduction potentials (vs. the ferrocenium/ferrocene (Fc(+)/Fc) couple in CH(2)Cl(2)), which rival those of parent TCNE, TCNQ and F(4)-TCNQ. The non-planarity of the chromophores strongly enhances their physical properties when compared to planar push-pull analogues. They feature high solubility, thermal stability and sublimability, which enables formation of amorphous, high-optical-quality thin films by vapour phase deposition and makes them interesting as advanced functional materials for novel opto-electronic devices.
本文探索了通过 [2+2] 环加成反应,随后进行缺电子烯烃(如四氰乙烯(TCNE)、7,7,8,8-四氰基对醌二甲烷(TCNQ)和 2,3,5,6-四氟-7,7,8,8-四氰基对醌二甲烷(F(4)-TCNQ))、二氰基乙烯基(DCV)和三氰基乙烯基(TCV)衍生物的环化还原反应,来开发独特的非平面推-拉生色团。这种高产的“点击化学”型转化反应,使用炔基树枝状大分子作为原料,可以得到在很窄的电位范围内能够多次接受电子的树枝状电子受体。通过多组分一锅法反应,将聚炔齐聚物与 TCNE 和四硫富瓦烯(TTF)反应,合成了具有树枝状烯骨架的[AB]型寡聚物。在大多数情况下,所得到的生色团具有强烈的分子内电荷转移带,延伸到近红外区域,其中一些具有较高的三阶光学非线性。尽管用强供体取代,但新生色团中的吸电子部分仍然是有效的受体,其中一些显示出正的第一还原电位(相对于 CH(2)Cl(2)中的 ferrocenium/ferrocene (Fc(+)/Fc) 对),与母体 TCNE、TCNQ 和 F(4)-TCNQ 相当。与平面推-拉类似物相比,生色团的非平面性大大增强了它们的物理性质。它们具有高的溶解度、热稳定性和升华性,这使得通过气相沉积形成非晶态、高质量的薄膜成为可能,并且使它们成为新型光电设备中先进功能材料的理想选择。