Mechanism-Inspired Design of Bifunctional Catalysts for the Alternating Ring-Opening Copolymerization of Epoxides and Cyclic Anhydrides

被引:136
作者
Abel, Brooks A. [1 ]
Lidston, Claire A. L. [1 ]
Coates, Geoffrey W. [1 ]
机构
[1] Cornell Univ, Dept Chem & Chem Biol, Baker Lab, Ithaca, NY 14853 USA
基金
美国国家科学基金会;
关键词
COMBINING HIGH-ACTIVITY; PROPYLENE-OXIDE; PHTHALIC-ANHYDRIDE; CYCLOHEXENE OXIDE; CARBON-DIOXIDE; ASYMMETRIC CATALYSIS; LEWIS PAIRS; METAL-FREE; ALIPHATIC POLYESTERS; COBALT(III) COMPLEX;
D O I
10.1021/jacs.9b05570
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Advances in catalysis have enabled the ring-opening copolymerization of epoxides and cyclic anhydrides to afford structurally and functionally diverse polyesters with controlled molecular weights and dispersities. However, the most common systems employ binary catalyst/cocatalyst pairs which suffer from slow polymerization rates at low loadings. Inspired by new mechanistic insight into the function of binary metal salen/nucleophilic cocatalyst systems at low concentrations, we report a bifunctional complex in which the salen catalyst and an aminocyclopropenium cocatalyst are covalently tethered. A modular ligand design circumvents the extended linear syntheses typical of bifunctional catalysts, enabling systematic variation to understand and enhance catalytic activity. The optimized bifunctional aluminum salen catalyst maintains excellent activity for the ring-opening copolymerization of epoxides and cyclic anhydrides at low concentrations (>= 0.025 mol %), and the aminocyclopropenium cocatalyst suppresses undesirable transesterification and epimerization side reactions, preserving the integrity of the polymer backbone.
引用
收藏
页码:12760 / 12769
页数:10
相关论文
共 72 条
[1]   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
[2]   Phase-Transfer and Other Types of Catalysis with Cyclopropenium Ions [J].
Bandar, Jeffrey S. ;
Tanaset, Anont ;
Lambert, Tristan H. .
CHEMISTRY-A EUROPEAN JOURNAL, 2015, 21 (20) :7365-7368
[3]   The influence of the metal (Al, Cr and Co) and the substituents of the porphyrin in controlling the reactions involved in the copolymerization of propylene oxide and cyclic anhydrides by porphyrin metal(III) complexes [J].
Bernard, Alexandre ;
Chatterjee, Chandrani ;
Chisholm, Malcolm H. .
POLYMER, 2013, 54 (11) :2639-2646
[4]   A Simple Graphical Method to Determine the Order in Catalyst [J].
Bures, Jordi .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (06) :2028-2031
[5]   Isospecific, Chain Shuttling Polymerization of Propylene Oxide Using a Bimetallic Chromium Catalyst: A New Route to Semicrystalline Polyols [J].
Childers, M. Ian ;
Vitek, Andrew K. ;
Morris, Lilliana S. ;
Widger, Peter C. B. ;
Ahmed, Syud M. ;
Zimmerman, Paul M. ;
Coates, Geoffrey W. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (32) :11048-11054
[6]  
Cohen CT, 2006, DALTON T, P237, DOI 10.1039/b513107c
[7]   Cobalt catalysts for the alternating copolymerization of propylene oxide and carbon dioxide: Combining high activity and selectivity [J].
Cohen, CT ;
Chu, T ;
Coates, GW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2005, 127 (31) :10869-10878
[8]   Unusual coordination mode of tetradentate Schiff base cobalt(III) complexes [J].
Cyriac, Anish ;
Jeon, Jong Yeob ;
Varghese, Jobi Kodiyan ;
Park, Ji Hae ;
Choi, Soo Young ;
Chung, Young Keun ;
Lee, Bun Yeoul .
DALTON TRANSACTIONS, 2012, 41 (05) :1444-1447
[9]   Connection of polymer chains using diepoxide in CO2/propylene oxide copolymerizations [J].
Cyriac, Anish ;
Lee, Sang Hwan ;
Lee, Bun Yeoul .
POLYMER CHEMISTRY, 2011, 2 (04) :950-956
[10]   Immortal CO2/Propylene Oxide Copolymerization: Precise Control of Molecular Weight and Architecture of Various Block Copolymers [J].
Cyriac, Anish ;
Lee, Sang Hwan ;
Varghese, Jobi Kodiyan ;
Park, Eun Seok ;
Park, Ji Hae ;
Lee, Bun Yeoul .
MACROMOLECULES, 2010, 43 (18) :7398-7401