Russo Virginie, Pieper Pauline, Heinrich Benoît, Donnio Bertrand, Deschenaux Robert
Institut de Chimie, Université de Neuchâtel, Avenue de Bellevaux 51, 2000, Neuchâtel, Switzerland.
Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR 7504, CNRS-Université de Strasbourg, 23 rue du Lœss, BP 43, 67034, Strasbourg Cedex 2, France.
Chemistry. 2016 Nov 21;22(48):17366-17376. doi: 10.1002/chem.201603408. Epub 2016 Oct 18.
Bis-[60]fullerodendrimers were synthesized by assembling [60]fullerene-containing type I (terminal olefin) and type II (α,β-unsaturated carbonyl olefin) olefins through the olefin cross-metathesis reaction. The synthetic modular approach developed in this study allowed the preparation of mono-[60]fullerodendrimers and their [60]fullerene-free analogues. First- and second-generation poly(aryl ester) dendrons carrying cyanobiphenyl mesogens were used as liquid-crystalline promoters. The liquid-crystalline properties were studied by polarized optical microscopy, differential scanning calorimetry, and small-angle X-ray scattering. In agreement with the nature and structure of the dendrimers, nematic, smectic, and multisegregated lamellar phases were observed. Owing to its versatility and tolerance towards many functional groups, olefin cross-metathesis proved to be a reaction of choice for the elaboration of molecular materials with complex architectures.
通过烯烃复分解反应组装含[60]富勒烯的I型(末端烯烃)和II型(α,β-不饱和羰基烯烃)烯烃,合成了双-[60]富勒odendrimers。本研究中开发的合成模块化方法允许制备单-[60]富勒odendrimers及其不含[60]富勒烯的类似物。携带氰基联苯液晶元的第一代和第二代聚(芳基酯)树枝状分子用作液晶促进剂。通过偏光显微镜、差示扫描量热法和小角X射线散射研究了液晶性质。与树枝状分子的性质和结构一致,观察到向列相、近晶相和多隔离层状相。由于其通用性和对许多官能团的耐受性,烯烃复分解被证明是制备具有复杂结构的分子材料的首选反应。