Pd(II) and Rh(I) Catalytic Precursors for Arene Alkenylation: Comparative Evaluation of Reactivity and Mechanism Based on Experimental and Computational Studies

被引:12
作者
Bennett, Marc T. [1 ]
Jia, Xiaofan [1 ]
Musgrave, Charles B., III [2 ]
Zhu, Weihao [1 ]
Goddard, William A., III [2 ]
Gunnoe, T. Brent [1 ]
机构
[1] Univ Virginia, Dept Chem, Charlottesville, VA 22904 USA
[2] CALTECH, Mat & Proc Simulat Ctr, Pasadena, CA 91125 USA
关键词
STEP STYRENE PRODUCTION; CATIONIC RU(II) CATALYST; H BOND ACTIVATION; ANTI-MARKOVNIKOV; PALLADIUM NANOPARTICLES; OXIDATIVE ARYLATION; BASIS-SETS; ETHYLENE; HYDROARYLATION; OLEFINS;
D O I
10.1021/jacs.3c04295
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We combine experimental and computational investigationsto compareand understand catalytic arene alkenylation using the Pd(II) and Rh(I)precursors Pd(OAc)(2) and [(& eta;(2)-C2H4)(2)Rh(& mu;-OAc)](2) with arene,olefin, and Cu(II) carboxylate at elevated temperatures (>120 & DEG;C).Under specific conditions, previous computational and experimentalefforts have identified heterotrimetallic cyclic PdCu2(& eta;(2)-C2H4)(3)(& mu;-OPiv)(6) and [(& eta;(2)-C2H4)(2)Rh(& mu;-OPiv)(2)](2)(& mu;-Cu) (OPiv= pivalate) species as likely active catalysts for these processes.Further studies of catalyst speciation suggest a complicated equilibriumbetween Cu(II)-containing complexes containing one Rh or Pd atom withcomplexes containing two Rh or Pd atoms. At 120 & DEG;C, Rh catalysisproduces styrene >20-fold more rapidly than Pd. Also, at 120 & DEG;C,Rh is & SIM;98% selective for styrene formation, while Pd is & SIM;82%selective. Our studies indicate that Pd catalysis has a higher predilectiontoward olefin functionalization to form undesired vinyl ester, whileRh catalysis is more selective for arene/olefin coupling. However,at elevated temperatures, Pd converts vinyl ester and arene to vinylarene, which is proposed to occur through low-valent Pd(0) clustersthat are formed in situ. Regardless of arene functionality, the regioselectivityfor alkenylation of mono-substituted arenes with the Rh catalyst givesan approximate 2:1 meta/para ratiowith minimal ortho C-H activation. In contrast,Pd selectivity is significantly influenced by arene electronics, withelectron-rich arenes giving an approximate 1:2:2 ortho/meta/para ratio, while the electron-deficient (& alpha;,& alpha;,& alpha;)-trifluorotoluenegives a 3:1 meta/para ratio withminimal ortho functionalization. Kinetic intermoleculararene ethenylation competition experiments find that Rh reacts mostrapidly with benzene, and the rate of mono-substituted arene alkenylationdoes not correlate with arene electronics. In contrast, with Pd catalysis,electron-rich arenes react more rapidly than benzene, while electron-deficientarenes react less rapidly than benzene. These experimental findings,in combination with computational results, are consistent with thearene C-H activation step for Pd catalysis involving significant & eta;(1)-arenium character due to Pd-mediated electrophilic aromaticsubstitution character. In contrast, the mechanism for Rh catalysisis not sensitive to arene-substituent electronics, which we proposeindicates less electrophilic aromatic substitution character for theRh-mediated arene C-H activation.
引用
收藏
页码:15507 / 15527
页数:21
相关论文
共 92 条
[51]   Intermolecular hydroarylation of unactivated olefins catalyzed by homogeneous platinum complexes [J].
Luedtke, Avery T. ;
Goldberg, Karen I. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2008, 47 (40) :7694-7696
[52]   Anti-Markovnikov olefin arylation catalyzed by an iridium complex [J].
Matsumoto, T ;
Taube, DJ ;
Periana, RA ;
Taube, H ;
Yoshida, H .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (30) :7414-7415
[53]   Oxidative arylation of ethylene with benzene to produce styrene [J].
Matsumoto, T ;
Yoshida, H .
CHEMISTRY LETTERS, 2000, (09) :1064-1065
[54]   Direct synthesis of styrene by rhodium-catalyzed oxidative arylation of ethylene with benzene [J].
Matsumoto, T ;
Periana, RA ;
Taube, DJ ;
Yoshida, H .
JOURNAL OF CATALYSIS, 2002, 206 (02) :272-280
[55]  
Matsumoto T., 2000, U.S. Patent, Patent No. [6127590A, 6127590, US6127590A]
[56]   Hydroarylation of unactivated olefins catalyzed by platinum(II) complexes [J].
McKeown, Bradley A. ;
Foley, Nicholas A. ;
Lee, John P. ;
Gunnoe, T. Brent .
ORGANOMETALLICS, 2008, 27 (16) :4031-4033
[57]   Control of Olefin Hydroarylation Catalysis via a Sterically and Electronically Flexible Platinum(II) Catalyst Scaffold [J].
McKeown, Bradley A. ;
Gonzalez, Hector Emanuel ;
Michaelos, Thoe ;
Gunnoe, T. Brent ;
Cundari, Thomas R. ;
Crabtree, Robert H. ;
Sabat, Michal .
ORGANOMETALLICS, 2013, 32 (14) :3903-3913
[58]   PtII-Catalyzed Ethylene Hydrophenylation: Influence of Dipyridyl Chelate Ring Size on Catalyst Activity and Longevity [J].
McKeown, Bradley A. ;
Gonzalez, Hector Emanuel ;
Gunnoe, T. Brent ;
Cundari, Thomas R. ;
Sabat, Michal .
ACS CATALYSIS, 2013, 3 (06) :1165-1171
[59]   Platinum(II)-Catalyzed Ethylene Hydrophenylation: Switching Selectivity between Alkyl- and Vinylbenzene Production [J].
McKeown, Bradley A. ;
Gonzalez, H. Emanuel ;
Friedfeld, Max R. ;
Brosnahan, Anna M. ;
Gunnoe, T. Brent ;
Cundari, Thomas R. ;
Sabat, Michal .
ORGANOMETALLICS, 2013, 32 (09) :2857-2865
[60]   Mechanistic Studies of Ethylene Hydrophenylation Catalyzed by Bipyridyl Pt(II) Complexes [J].
McKeown, Bradley A. ;
Gonzalez, Hector Emanuel ;
Friedfeld, Max R. ;
Gunnoe, T. Brent ;
Cundari, Thomas R. ;
Sabat, Michal .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2011, 133 (47) :19131-19152