Department of Polymer Science, Kyungpook National University, 1370 Sankyuk-dong, Buk-ku, Daegu, 702-701, Korea; Daegu Technopark Nano Convergence Practical Application Center, 891-5 Daecheon-dong, Dalseo-ku, Daegu, 704-801, Korea.
Macromol Rapid Commun. 2013 Sep;34(18):1471-9. doi: 10.1002/marc.201300506. Epub 2013 Aug 7.
Disubstituted acetylene monomers [1,2-diphenylacetylenes (DPAs: DPA-pC1, DPA-mC1, DPA-pC8); 1-phenyl-2-hexylacetylene (PHA-pC1)] are tested for asymmetric polymerization in chiral monoterpenes used as solvents and compared with the corresponding monosubstituted acetylene monomer [1-phenylacetylene (PA-pC1)]. DPA-pC1 containing a trimethylsilyl group in the para-position of the phenyl ring produces an optically active polymer with a large Cotton effect, despite the absence of a stereogenic center. The polymer sample obtained by polymerization in 87% ee (-)-α-pinene shows the strongest CD signal (gCD value at 385 nm: ∼3.2 × 10⁻³). The Cotton bands of the polymers obtained in (-)- and (+)-α-pinenes show the opposite sign in the CD signals. Theoretical calculations show that only the cis-cisoid model adopts a helical conformation. A time-correlated single photon counting experiment shows that the emission of the chiral polymer originates from a virtually single excited species with a 98% component fraction. This polymer solution does not show any significant decrease in gCD value over a wide temperature range of 20 to 80 °C. No noticeable decrease in the gCD value is detected when the polymer solution is kept at relatively low temperatures for a prolonged period (35 d). In contrast, the other polymers show no CD signal.
二取代乙炔单体[1,2-二苯基乙炔(DPAs:DPA-pC1、DPA-mC1、DPA-pC8);1-苯基-2-己炔(PHA-pC1)]在作为溶剂的手性单萜中进行不对称聚合测试,并与相应的单取代乙炔单体[1-苯基乙炔(PA-pC1)]进行比较。尽管苯环对位的三甲基甲硅烷基取代的 DPA-pC1 没有手性中心,但它仍能产生具有大的Cotton 效应的光学活性聚合物。在 87%ee(-)-α-蒎烯中聚合得到的聚合物样品显示出最强的 CD 信号(在 385nm 处的 gCD 值:约 3.2×10⁻³)。在(-)-和(+)-α-蒎烯中得到的聚合物的 Cotton 带在 CD 信号中呈现相反的符号。理论计算表明,只有顺式-顺式模型采用螺旋构象。时间相关单光子计数实验表明,手性聚合物的发射源自实质上具有 98%组分分数的单激发物种。该聚合物溶液在 20 至 80°C 的宽温度范围内,gCD 值没有明显下降。当聚合物溶液在相对较低的温度下长时间(35 天)保持时,gCD 值没有明显下降。相比之下,其他聚合物没有 CD 信号。