cis/trans Gradients in living ring-opening metathesis polymerization

被引:10
作者
Bishop, John P. [1 ]
Register, Richard A. [1 ]
机构
[1] Princeton Univ, Dept Chem & Biol Engn, Princeton, NJ 08544 USA
基金
美国国家科学基金会;
关键词
cis/trans Isomerism; Polymerization kinetics; Ring-opening metathesis polymerization; C-13; NMR-SPECTRA; OLEFIN METATHESIS; ALKYLIDENE COMPLEXES; POLYMERS; CATALYSTS; TRANS; CIS; TACTICITY; POLY(1,3-CYCLOPENTYLENEVINYLENE); MICROSTRUCTURE;
D O I
10.1016/j.polymer.2010.06.061
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The chain microstructure (cis/trans ratio) in ring-opening metathesis polymerization (ROMP) of norbornene and methyltetracyclododecene (MTD) using the Schrock-type initiator Mo(N-2,6-i-Pr(2)C(6)H(3)) (=CHCMe(2)Ph)(OCMe(3))(2) is shown to be a strong function of monomer concentration, providing a convenient means for tuning the average trans content in the resulting polymers. Moreover, since this is a "living" ROMP initiator, chains formed in batch polymerizations show a continuous gradient of trans content down the chain, with the trans content increasing with conversion. This gradient can be quite substantial; for a typical norbornene polymerization, trans content varies from 30% at one end of the chain to nearly 80% at the other end. The results are explained based on a literature kinetic description for the behavior of this initiator, where cis and trans units are added to the chain by syn and anti rotamers of the active site, respectively. A quantitative mathematical description is developed for the chain microstructure, and associated kinetic parameters are measured for norbornene and MTD at room temperature. The model accurately describes both the variation in average trans content with starting monomer concentration, and the gradients in trans content measured via samples taken at different conversions throughout the polymerization. In contrast, ROMP of MID using the first-generation Grubbs' initiator Ru(=CHPh)Cl(2)(PCY(3))(2) shows no down-chain gradient in trans content. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:4121 / 4126
页数:6
相关论文
共 21 条
[1]   METATHESIS POLYMERIZATION - COPOLYMERS OF METHYLTETRACYCLODODECENE AND NORBORNENE NITRILE [J].
ASRAR, J ;
CURRAN, SA .
JOURNAL OF MOLECULAR CATALYSIS, 1991, 65 (1-2) :1-14
[2]   Ring-opening metathesis polymerization of norbornene and norbornadiene by tungsten(II) and molybdenum(II) complexes [J].
Czelusniak, I ;
Szymanska-Buzar, T .
JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 2002, 190 (1-2) :131-143
[3]  
FEAST WJ, 1992, MAKROMOL CHEM, V193, P2103
[4]  
GREENE RME, 1986, MAKROMOL CHEM, V187, P619
[5]  
GREENE RME, 1987, MAKROMOL CHEM, V188, P1933
[6]   MICROSTRUCTURE AND MECHANISM OF FORMATION OF THE RING-OPENED POLYMERS OF SYN AND ANTI-7-METHYLBICYCLO-[2.2.1]HEPT-2-ENE INITIATED WITH METATHESIS CATALYSTS [J].
HAMILTON, JG ;
IVIN, KJ ;
ROONEY, JJ .
JOURNAL OF MOLECULAR CATALYSIS, 1985, 28 (1-3) :255-278
[7]   Ring-opening metathesis polymerization of 7-methylbicyclo[2.2.1]hepta-2,5-diene initiated by well-defined molybdenum and ruthenium carbene complexes [J].
Ivin, KJ ;
Kenwright, AM ;
Khosravi, E ;
Hamilton, JG .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 2000, 606 (01) :37-48
[8]   C-13 NMR-SPECTRA OF POLYMERS MADE BY RING-OPENING POLYMERIZATION OF (+/-) AND (+)-EXO-5-METHYLBICYCLO[2.2.1]HEPT-2-ENE USING METATHESIS CATALYSTS [J].
IVIN, KJ ;
LAPIENIS, G ;
ROONEY, JJ .
POLYMER, 1980, 21 (04) :436-443
[9]  
IVIN KJ, 1979, MAKROMOL CHEM, V180, P1989
[10]  
IVIN KJ, 1977, MAKROMOL CHEM, V178, P1545