Percec Virgil, Aqad Emad, Peterca Mihai, Rudick Jonathan G, Lemon Lance, Ronda Juan C, De Binod B, Heiney Paul A, Meijer E W
Roy & Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
J Am Chem Soc. 2006 Dec 20;128(50):16365-72. doi: 10.1021/ja0665848.
Structural and retrostructural analysis of helical dendronized polyacetylenes (i.e., self-organizable polyacetylenes containing first generation dendrons or minidendrons as side groups) synthesized by the polymerization of minidendritic acetylenes with [Rh(nbd)Cl]2 (nbd = 2,5-norbornadiene) reveals an approximately 10% change in the average column stratum thickness (l) of the cylindrical macromolecules with a chiral periphery, through which a strong preference for a single-handed screw-sense is communicated. The cylindrical macromolecules reversibly interconvert between a three-dimensional (3D) centered rectangular lattice (Phi r-c,k) exhibiting long-range intracolumnar helical order at lower temperatures and a two-dimensional (2D) hexagonal columnar lattice (Phi h) with short-range helical order at higher temperatures. A polymer containing chiral, nonracemic peripheral alkyl tails is found to have a larger l as compared to the achiral polymers. In methyl cyclohexane solution, the same polymer exhibits an intense signal in circular dichroism (CD) spectra, whose intensity decreases upon heating. The observed change in l indicates that the chiral tails alter the polymer conformation from that of the corresponding polymer with achiral side chains. This change in conformation results in a relatively large free energy difference (DeltaGh) favoring one helix-sense over the other (per monomer residue). The capacity to distort the polymer conformation and corresponding free energy is related to the population of branches in the chiral tails and their distance from the polymer backbone by comparison to recently reported first and second generation dendronized polyphenylacetylenes.
通过将小型树枝状乙炔与[Rh(nbd)Cl]₂(nbd = 2,5 - 降冰片二烯)聚合合成的螺旋树枝状聚乙炔(即含有第一代树枝状结构或小型树枝状结构作为侧基的可自组装聚乙炔)的结构和逆向结构分析表明,具有手性外围的圆柱形大分子的平均柱层厚度(l)有大约10%的变化,通过这种变化传递了对单手螺旋方向的强烈偏好。圆柱形大分子在较低温度下表现出长程柱内螺旋有序的三维(3D)中心矩形晶格(Phi r - c,k)和在较高温度下具有短程螺旋有序的二维(2D)六方柱晶格(Phi h)之间可逆地相互转化。与非手性聚合物相比,含有手性、非外消旋外围烷基链的聚合物具有更大的l。在甲基环己烷溶液中,相同的聚合物在圆二色性(CD)光谱中表现出强烈的信号,其强度在加热时降低。观察到的l的变化表明手性链尾改变了聚合物的构象,使其不同于具有非手性侧链的相应聚合物。这种构象变化导致了相对较大的自由能差(DeltaGh),有利于一种螺旋方向而非另一种(每个单体残基)。与最近报道的第一代和第二代树枝状聚苯乙炔相比,扭曲聚合物构象的能力和相应的自由能与手性链尾中的支链数量及其与聚合物主链的距离有关。