Kimura Hideaki, Kanesaka Sho, Kuroki Shigeki, Ando Isao, Asano Atsushi, Kurosu Hiromichi
Department of Chemistry and Materials Science, International Research Center of Macromolecular Science, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8552, Japan.
Magn Reson Chem. 2005 Mar;43(3):209-16. doi: 10.1002/mrc.1527.
The structure of poly(diethylsiloxane) (PDES) has been characterized using solid-state NMR of (17)O. The sample studied had a weight-average molecular weight of 2.45 x 10(5). The sample was prepared by utilizing the cationic ring-opening polymerization of (17)O-enriched hexacyclotrisiloxane. Solid-state NMR of (17)O-enriched PDES was measured on the low-temperature beta(1) phase, the high-temperature beta(2) phase, the two-phase system consisting of the liquid crystal and isotropic liquid phase and the isotropic phase. From these data, the molecular structure and dynamics of PDES in the various phases were characterized via the chemical shifts of (17)O, and electric field gradient parameters were determined from NMR and ab initio molecular orbital (MO) calculations. In addition to the solid-state NMR of (1)H, (13)C and (29)Si previously reported on these samples, knowledge of the dynamic behavior of PDES as inferred from the NMR of (17)O in the present study was enhanced significantly. Further, the potential of combining the experimental NMR of (17)O with ab initio MO calculations to characterize the dynamics of polymers containing oxygen is demonstrated.
聚二乙硅氧烷(PDES)的结构已通过(17)O的固态核磁共振进行了表征。所研究的样品重均分子量为2.45×10(5)。该样品是通过利用富含(17)O的六环三硅氧烷的阳离子开环聚合制备的。在低温β(1)相、高温β(2)相、由液晶和各向同性液相组成的两相体系以及各向同性相中测量了富含(17)O的PDES的固态核磁共振。根据这些数据,通过(17)O的化学位移表征了PDES在不同相中分子结构和动力学,并通过核磁共振和从头算分子轨道(MO)计算确定了电场梯度参数。除了之前报道的关于这些样品的(1)H、(13)C和(29)Si的固态核磁共振外,本研究中从(17)O的核磁共振推断出的PDES动态行为的知识得到了显著增强。此外,还展示了将(17)O的实验核磁共振与从头算MO计算相结合以表征含氧聚合物动力学的潜力。