Schrettl Stephen, Contal Emmanuel, Hoheisel Tobias N, Fritzsche Martin, Balog Sandor, Szilluweit Ruth, Frauenrath Holger
Ecole Polytechnique Fédérale de Lausanne (EPFL) , Institute of Materials , Laboratory of Macromolecular and Organic Materials , EPFL - STI - IMX - LMOM, MXG 037, Station 12 , 1015 Lausanne , Switzerland . Email:
ETH Zürich , Department of Materials , Vladimir-Prelog-Weg 1-5/10 , 8093 Zurich , Switzerland.
Chem Sci. 2015 Jan 1;6(1):564-574. doi: 10.1039/c4sc03154g. Epub 2014 Oct 24.
Carbon-rich organic compounds containing a series of conjugated triple bonds (oligoynes) are relevant synthetic targets, but an improved access to oligoynes bearing functional groups would be desirable. Here, we report the straightforward synthesis of two series of oligoyne amphiphiles with glycoside or carboxylate polar head groups, investigate their self-assembly behavior in aqueous media, and their use as precursors for the formation of oligoyne rotaxanes with cyclodextrin hosts. To this end, we employed mono-, di-, or triacetylenic building blocks that gave access to the corresponding zinc acetylides and allowed for the efficient elongation of the oligoyne segment in few synthetic steps a Negishi coupling protocol. Moreover, we show that the obtained oligoyne derivatives can be deprotected to yield the corresponding amphiphiles. Depending on their head groups, the supramolecular self-assembly of these amphiphiles gave rise to different types of carbon-rich colloidal aggregates in aqueous media. Furthermore, their amphiphilicity was exploited for the preparation of novel oligoyne cyclodextrin rotaxanes using simple host-guest chemistry in water.
含有一系列共轭三键的富碳有机化合物(低聚炔)是重要的合成目标,但改进对带有官能团的低聚炔的制备方法仍很有必要。在此,我们报道了直接合成两类分别带有糖苷或羧酸盐极性头基的低聚炔两亲分子,研究了它们在水介质中的自组装行为,以及它们作为与环糊精主体形成低聚炔轮烷的前体的用途。为此,我们采用了单炔、二炔或三炔构建单元,得到了相应的乙炔锌,并通过几步合成步骤(根岸偶联反应)实现了低聚炔链段的有效延长。此外,我们表明所得到的低聚炔衍生物可以脱保护得到相应的两亲分子。根据它们的头基不同,这些两亲分子在水介质中的超分子自组装产生了不同类型的富碳胶体聚集体。此外,利用它们的两亲性,通过在水中简单主客体化学方法制备了新型低聚炔环糊精轮烷。