Role of the cocatalyst in the copolymerization of CO2 and cyclohexene oxide utilizing chromium salen complexes

被引:248
作者
Darensbourg, DJ [1 ]
Mackiewicz, RM [1 ]
机构
[1] Texas A&M Univ, Dept Chem, College Stn, TX 77843 USA
关键词
D O I
10.1021/ja053544f
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The mechanism of the copolymerization of cyclohexene oxide and carbon dioxide to afford poly(cyclohexylene)carbonate catalyzed by (salen)CrN3 (H(2)salen = N,N,'-bis(3,5-di-tert-butylsalicylidene)-1,2ethylene-diimine) in the presence of a broad range of cocatalysts has been studied. We have previously established the rate of copolymer formation to be very sensitive to both the electron-donating ability of the salen ligand and the [cocatalyst], where N-heterocyclic amines, phosphines, and ionic salts were effective cocatalysts. Significant increases in the rate of copolymerization have been achieved with turnover frequencies of similar to 1200 h(-1), thereby making these catalyst systems some of the most active and robust thus far uncovered. Herein we offer a detailed explanation of the role of the cocatalyst in the copolymerization Of CO2 and cyclohexene oxide catalyzed by chromium salen derivatives. A salient feature of the N-heterocyclic amine- or phosphine-cocatalyzed processes is the presence of an initiation period prior to reaching the maximum rate of copolymerization. Importantly, this is not observed for comparable processes involving ionic salts as cocatalysts, e.g., PPN+X-. In these latter cases the copolymerization reaction exhibits ideal kinetic behavior and is proposed to proceed via a reaction pathway involving anionic six-coordinate (salen)Cr(N-3)X- derivatives. By way of infrared and P-31 NMR spectroscopic studies, coupled with in situ kinetic monitoring of the reactions, a mechanism of copolymerization is proposed where the neutral cocatalysts react with CO2 and/or epoxide to produce inner salts or zwitterions which behave in a manner similar to that of ionic salts.
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页码:14026 / 14038
页数:13
相关论文
共 62 条
[1]   ALTERNATING COPOLYMERIZATION OF CARBON-DIOXIDE AND EPOXIDE CATALYZED BY THE ALUMINUM PORPHYRIN-QUATERNARY ORGANIC SALT OR TRIPHENYLPHOSPHINE SYSTEM - SYNTHESIS OF POLYCARBONATE WITH WELL-CONTROLLED MOLECULAR-WEIGHT [J].
AIDA, T ;
ISHIKAWA, M ;
INOUE, S .
MACROMOLECULES, 1986, 19 (01) :8-13
[2]   ACTIVATION OF CARBON-DIOXIDE WITH ALUMINUM PORPHYRIN AND REACTION WITH EPOXIDE - STUDIES ON (TETRAPHENYLPORPHINATO)ALUMINUM ALKOXIDE HAVING A LONG OXYALKYLENE CHAIN AS THE ALKOXIDE GROUP [J].
AIDA, T ;
INOUE, S .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (05) :1304-1309
[3]   CATALYTIC REACTION ON BOTH SIDES OF A METALLOPORPHYRIN PLANE - ALTERNATING COPOLYMERIZATION OF PHTHALIC-ANHYDRIDE AND EPOXYPROPANE WITH AN ALUMINUM PORPHYRIN QUATERNARY SALT SYSTEM [J].
AIDA, T ;
INOUE, S .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (05) :1358-1364
[4]   Metalloporphyrins as initiators for living and immortal polymerizations [J].
Aida, T ;
Inoue, S .
ACCOUNTS OF CHEMICAL RESEARCH, 1996, 29 (01) :39-48
[5]   High-activity, single-site catalysts for the alternating copolymerization of CO2 and propylene oxide [J].
Allen, SD ;
Moore, DR ;
Lobkovsky, EB ;
Coates, GW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (48) :14284-14285
[6]  
BRAUDEN CI, 1994, CARBON DIOXIDE FIXAT
[7]   Metal ion scrambling in hexanuclear M6(Et2NCO2)12 complexes (M = Co, Mg).: Synthesis, solid state structure, and solution dynamics of heteronuclear COnMg6-n(Et2NCO2)12 complexes [J].
Caudle, MT ;
Benedict, JB ;
Mobley, CK ;
Straessler, NA ;
Groy, TL .
INORGANIC CHEMISTRY, 2002, 41 (12) :3183-3190
[8]   Electronic effects in (salen)Mn-based epoxidation catalysts [J].
Cavallo, L ;
Jacobsen, H .
JOURNAL OF ORGANIC CHEMISTRY, 2003, 68 (16) :6202-6207
[9]   Single-site β-diiminate zinc catalysts for the alternating copolymerization of CO2 and epoxides:: Catalyst synthesis and unprecedented polymerization activity [J].
Cheng, M ;
Moore, DR ;
Reczek, JJ ;
Chamberlain, BM ;
Lobkovsky, EB ;
Coates, GW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (36) :8738-8749
[10]   Enantiomerically-enriched organic reagents via polymer synthesis:: enantioselective copolymerization of cycloalkene oxides and CO2 using homogeneous, zinc-based catalysts [J].
Cheng, M ;
Darling, NA ;
Lobkovsky, EB ;
Coates, GW .
CHEMICAL COMMUNICATIONS, 2000, (20) :2007-2008