Xu Rui, Schweizer W Bernd, Frauenrath Holger
ETH Zürich, Department of Materials, Wolfgang-Pauli-Strasse 10, HCI H520, CH-8093 Zürich, Switzerland.
Chemistry. 2009 Sep 14;15(36):9105-16. doi: 10.1002/chem.200900985.
A series of symmetrically and unsymmetrically substituted octa-2,4,6-triyne-1,8-diol derivatives with benzoyl, 4-dodecyloxybenzoyl, as well as perfluorobenzoyl substituents were prepared and investigated with respect to their crystal structures and topochemical polymerizability. Single-crystal structures for several of these triacetylene monomers have been obtained and proved that the perfluorophenyl-phenyl interactions played a decisive role in the molecular packing. As a consequence of the geometric requirements imposed by the perfluorophenyl-phenyl interactions, packing parameters appropriate for a topochemical triacetylene polymerization in the sense of either a 1,6- or a 1,4-polyaddition along different crystallographic axes were observed in two cases, and UV irradiation led to successful polymerization. Raman as well as solid-state (13)C NMR spectra of the obtained polymers revealed that the polymerization had predominantly proceeded in the form of a 1,4-polyaddition.
制备了一系列具有苯甲酰基、4-十二烷氧基苯甲酰基以及全氟苯甲酰基取代基的对称和不对称取代的八-2,4,6-三炔-1,8-二醇衍生物,并对其晶体结构和拓扑化学聚合性进行了研究。已获得其中几种三乙炔单体的单晶结构,证明全氟苯基-苯基相互作用在分子堆积中起决定性作用。由于全氟苯基-苯基相互作用所施加的几何要求,在两种情况下观察到了适合沿不同晶轴进行1,6-或1,4-加聚意义上的拓扑化学三乙炔聚合的堆积参数,并且紫外线照射导致成功聚合。所得聚合物的拉曼光谱以及固态(13)C NMR光谱表明,聚合主要以1,4-加聚的形式进行。