降冰片烯
从头算
化学位移
共聚物
化学
计算化学
核磁共振谱数据库
乙烯
密度泛函理论
碳-13核磁共振
原子轨道
聚合物
谱线
结晶学
物理化学
物理
立体化学
有机化学
量子力学
催化作用
电子
作者
Massimo Ragazzi,Paola Carbone,Dino R. Ferro
摘要
Abstract Cycloolefin copolymers (COC) have recently raised much interest because of their excellent thermal and optical properties, largely determined by the chain composition and stereochemistry. Previous force‐field computations allowed us to define the main conformational characteristics of ethylene–norbornene (E–N) copolymers and to contribute to the elucidation of their microstructure on the basis of empirical relationships between conformation and 13 C nuclear magnetic resonance (NMR) chemical shifts. A thorough test of ab initio 13 C chemical shifts computations [gauge‐invariant atomic orbitals (GIAO)] on known cases shows that the agreement with experimental data is quite good, especially with the MPW1PW91 density functional theory (DFT), using the 6‐311+G(2d,p) basis set on properly energy‐minimized structures. We applied this method on proper model compounds to confirm the signal assignment of the spectra of E–N copolymers in the presence of norbornene microblocks, where strong effects arising from ring distortions are expected to occur. The results nicely confirm the latest assignment of norbornene signals belonging to ENNE sequences. This shows the great potentialities of GIAO/DFT computations with regard to complex spectra interpretation and polymer microstructural investigations. © 2002 Wiley Periodicals, Inc. Int J Quantum Chem, 2002
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