Hydrodecarboxylation of Carboxylic and Malonic Acid Derivatives via Organic Photoredox Catalysis: Substrate Scope and Mechanistic Insight

被引:276
作者
Griffin, Jeremy D. [1 ]
Zeller, Mary A. [1 ]
Nicewicz, David A. [1 ]
机构
[1] Univ N Carolina, Dept Chem, Chapel Hill, NC 27599 USA
关键词
ANTI-MARKOVNIKOV HYDROAMINATION; ALPHA-AMINO-ACIDS; RADICAL DECARBOXYLATION; MERGING PHOTOREDOX; NICKEL CATALYSIS; ELECTROCHEMICAL OXIDATION; ALKENES; ARYLATION; CONSTRUCTION; FLUORINATION;
D O I
10.1021/jacs.5b07770
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A direct, catalytic hydrodecarboxylation of primary, secondary, and tertiary carboxylic acids is reported. The catalytic system consists of a Fukuzumi acridinium photooxidant with phenyldisulfide acting as a redox-active cocatalyst. Substoichiometric quantities of Hunig's base are used to reveal the carboxylate. Use of trifluoroethanol as a solvent allowed for significant improvements in substrate compatibilities, as the method reported is not limited to carboxylic acids bearing alpha heteroatoms or phenyl substitution. This method has been applied to the direct double decarboxylation of malonic acid derivatives, which allows for the convenient use of dimethyl malonate as a methylene synthon. Kinetic analysis of the reaction is presented showing a lack of a kinetic isotope effect when generating deuterothiophenol in situ as a hydrogen atom donor. Further kinetic analysis demonstrated first-order kinetics with respect to the carboxylate, while the reaction is zero-order in acridinium catalyst, consistent with another finding suggesting the reaction is light limiting and carboxylate oxidation is likely turnover limiting. Stern-Volmer analysis was carried out in order to determine the efficiency for the carboxylates to quench the acridinium excited state.
引用
收藏
页码:11340 / 11348
页数:9
相关论文
共 74 条
[1]   Dielectric constants of some organic solvent-water mixtures at various temperatures [J].
Akerlof, G .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1932, 54 :4125-4139
[2]   Enantioselective copper-catalyzed conjugate addition and allylic substitution reactions [J].
Alexakis, A. ;
Backvall, J. E. ;
Krause, N. ;
Pamies, O. ;
Dieguez, M. .
CHEMICAL REVIEWS, 2008, 108 (08) :2796-2823
[3]   SILVER(I)-CATALYZED OXIDATIVE DECARBOXYLATION OF ACIDS BY PEROXYDISULFATE - ROLE OF SILVER(II) [J].
ANDERSON, JM ;
KOCHI, JK .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1970, 92 (06) :1651-&
[4]   Homolytic and heterolytic radical cleavage in the Kolbe reaction -: Electrochemical oxidation of arylmethyl carboxylate ions [J].
Andrieux, CP ;
Gonzalez, F ;
Savéant, JM .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2001, 498 (1-2) :171-180
[5]   NEW AND IMPROVED METHODS FOR THE RADICAL DECARBOXYLATION OF ACIDS [J].
BARTON, DHR ;
CRICH, D ;
MOTHERWELL, WB .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1983, (17) :939-941
[6]   A PRACTICAL ALTERNATIVE TO THE HUNSDIECKER REACTION [J].
BARTON, DHR ;
CRICH, D ;
MOTHERWELL, WB .
TETRAHEDRON LETTERS, 1983, 24 (45) :4979-4982
[7]   INVENTION OF NEW REACTIONS USEFUL IN THE CHEMISTRY OF NATURAL-PRODUCTS [J].
BARTON, DHR ;
ZARD, SZ .
PURE AND APPLIED CHEMISTRY, 1986, 58 (05) :675-684
[8]   A NEW RADICAL DECARBOXYLATION REACTION FOR THE CONVERSION OF CARBOXYLIC-ACIDS INTO HYDROCARBONS [J].
BARTON, DHR ;
DOWLATSHAHI, HA ;
MOTHERWELL, WB ;
VILLEMIN, D .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1980, (15) :732-733
[9]   Photocatalytic Decarboxylative Reduction of Carboxylic Acids and Its Application in Asymmetric Synthesis [J].
Cassani, Carlo ;
Bergonzini, Giulia ;
Wallentin, Carl-Johan .
ORGANIC LETTERS, 2014, 16 (16) :4228-4231
[10]   Merging Photoredox and Nickel Catalysis: The Direct Synthesis of Ketones by the Decarboxylative Arylation of -Oxo Acids [J].
Chu, Lingling ;
Lipshultz, Jeffrey M. ;
MacMillan, David W. C. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2015, 54 (27) :7929-7933