Unified mechanistic concept of electrophilic aromatic nitration: Convergence of computational results and experimental data

被引:139
作者
Esteves, PM [1 ]
Carneiro, JWD
Cardoso, SP
Barbosa, AGH
Laali, KK
Rasul, G
Prakash, GKS
Olah, GA
机构
[1] Univ So Calif, Loker Hydrocarbon Res Inst, Los Angeles, CA 90089 USA
[2] Univ So Calif, Dept Chem, Los Angeles, CA 90089 USA
[3] Univ Fed Rio de Janeiro, Inst Quim, BR-21949900 Rio De Janeiro, Brazil
[4] Univ Fed Fluminense, Inst Quim, BR-24020150 Niteroi, RJ, Brazil
[5] Kent State Univ, Dept Chem, Kent, OH 44242 USA
关键词
D O I
10.1021/ja021307w
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The mechanism of electrophilic aromatic nitration was revisited. Based on the available experimental data and new high-level quantum chemical calculations, a modification of the previous reaction mechanism is proposed involving three separate intermediates on the potential energy diagram of the reaction. The first, originally considered an unoriented pi-complex or electron donor acceptor complex (EDA), involves high electrostatic and charge-transfer interactions between the nitronium ion and the a-aromatics. It explains the observed low substrate selectivity in nitration with nitronium salts while maintaining high positional selectivity, as well as observed oxygen transfer reactions in the gas phase. The subsequent second intermediate originally considered an oriented "pi-complex" is now best represented by an intimate radical cation-molecule pair, C6H6+/.NO2, that is, a SET complex, indicative of single-electron transfer from the aromatic a-system to NO2+. Subsequently, it collapses to afford the final a-complex intermediate, that is, an arenium ion. The proposed three discrete intermediates in electrophilic aromatic nitration unify previous mechanistic proposals and also contribute to a better understanding of this fundamentally important reaction. The previously obtained ICR data of oxygen transfer from NO2+ to the aromatic ring are also accommodated by the proposed mechanism. The most stable intermediate of this reaction on its potential energy surface is a complex between phenol and NO+. The phenol-NO+ complex decomposes affording C6H6O+./PhOH+ and NO, in agreement with the ICR results.
引用
收藏
页码:4836 / 4849
页数:14
相关论文
共 82 条
[1]   The occurrence of electron transfer in aromatic nitration: dynamical aspects [J].
Albunia, AR ;
Borrelli, R ;
Peluso, A .
THEORETICAL CHEMISTRY ACCOUNTS, 2000, 104 (3-4) :218-222
[2]   EXPERIMENTAL-STUDY ON THE MECHANISM OF GAS-PHASE AROMATIC NITRATION BY PROTONATED METHYL NITRATE [J].
ASCHI, M ;
ATTINA, M ;
CACACE, F ;
RICCI, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1994, 116 (21) :9535-9542
[3]   ELECTROPHILIC AROMATIC NITRATION IN THE GAS-PHASE [J].
ATTINA, M ;
CACACE, F ;
YANEZ, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1987, 109 (17) :5092-5097
[4]   AROMATIC NITRATION AT THE ENCOUNTER RATE IN THE GAS-PHASE [J].
ATTINA, M ;
CACACE, F ;
DE PETRIS, G .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 1987, 26 (11) :1177-1178
[5]   ''Ipso'' aromatic nitration in the gas phase [J].
Attina, M ;
Cacace, F ;
Ricci, A .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (11) :4424-4429
[6]   DENSITY-FUNCTIONAL THERMOCHEMISTRY .3. THE ROLE OF EXACT EXCHANGE [J].
BECKE, AD .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (07) :5648-5652
[7]  
BENEZRA SA, 1970, J AM CHEM SOC, V92, P7501
[8]   AB-INITIO STUDY OF THE POTENTIAL-ENERGY SURFACE OF THE REACTION OF ETHYLENE WITH NITRONIUM ION [J].
BERNARDI, F ;
ROBB, MA ;
ROSSI, I ;
VENTURINI, A .
JOURNAL OF ORGANIC CHEMISTRY, 1993, 58 (25) :7074-7078
[9]   DETERMINING ATOM-CENTERED MONOPOLES FROM MOLECULAR ELECTROSTATIC POTENTIALS - THE NEED FOR HIGH SAMPLING DENSITY IN FORMAMIDE CONFORMATIONAL-ANALYSIS [J].
BRENEMAN, CM ;
WIBERG, KB .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 1990, 11 (03) :361-373
[10]   THE RADIOLYTIC APPROACH TO GAS-PHASE ION CHEMISTRY [J].
CACACE, F .
ACCOUNTS OF CHEMICAL RESEARCH, 1988, 21 (06) :215-222