H-coupled electron transfer in alkane C-H Activations with halogen electrophiles

被引:57
作者
Fokin, AA [1 ]
Shubina, TE
Gunchenko, PA
Isaev, SD
Yurchenko, AG
Schreiner, PR
机构
[1] Univ Georgia, Dept Chem, Athens, GA 30602 USA
[2] Kiev Polytech Inst, Dept Organ Chem, UA-03056 Kiev, Ukraine
[3] Univ Giessen, Inst Organ Chem, D-35392 Giessen, Germany
关键词
D O I
10.1021/ja0265512
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The mechanisms for the reactions of isobutane and adamantane with polyhalogen electrophiles (HHal(2)(+), Hal(3)(+), Hal(5)(+), and Hal(7)(+), Hal=Cl, Br, or I) were studied computationally at the MP2 and B3LYP levels of theory with the 6-31G** (C, H, Cl, Br) and 3-21G* (I) basis sets, as well as experimentally for adamantane halogenations in Br-2, Br-2/HBr, and I+Cl-/CCl4. The transition structures for the activation step display almost linear C...H...Hal interactions and are characterized by significant charge transfer to the electrophile; the hydrocarbon moieties resemble the respective radical cation structures. The regiospecificities for polar halogenations of the 3degrees C-H bonds of adamantane, the high experimental kinetic isotope effects (k(H)/k(D)=3-4), the rate accelerations in the presence of Lewis and proton (HBr) acids, and the high kinetic orders for halogen (7.5 for Br-2) can only be understood in terms of an H-coupled electron-transfer mechanism. The three centered-two electron (3c-2e) electrophilic mechanistic concept based on the attack of the electrophile on a C-H bond does not apply; electrophilic 3c-2e interactions dominate the C-H activations only with nonoxidizing electrophiles such as carbocations. This was shown by a comparative computational analysis of the electrophilic and H-coupled electron-transfer activation mechanisms for the isobutane reaction with an ambident electrophile, the allyl cation, at the above levels of theory.
引用
收藏
页码:10718 / 10727
页数:10
相关论文
共 107 条
[51]   BRIDGEHEAD REACTIVITY IN PROTOADAMANTANE - IONIC BROMINATION [J].
KARIM, A ;
MCKERVEY, MA .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 1, 1974, (21) :2475-2479
[52]   A quantum-chemical study of hydride transfer in catalytic transformations of paraffins on zeolites. Pathways through adsorbed nonclassical carbonium ions [J].
Kazansky, VB ;
Frash, MV ;
vanSanten, RA .
CATALYSIS LETTERS, 1997, 48 (1-2) :61-67
[53]   Enzyme catalysis: Beyond classical paradigms [J].
Kohen, A ;
Klinman, JP .
ACCOUNTS OF CHEMICAL RESEARCH, 1998, 31 (07) :397-404
[54]   ENERGETICS AND STRUCTURE OF THE 1-ADAMANTYL AND 2-ADAMANTYL RADICALS AND THEIR CORRESPONDING CARBONIUM-IONS BY PHOTOELECTRON-SPECTROSCOPY [J].
KRUPPA, GH ;
BEAUCHAMP, JL .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1986, 108 (09) :2162-2169
[56]   Kinetic isotope effects for the C-H activation step in phase-transfer halogenations of alkanes [J].
Lauenstein, O ;
Fokin, AA ;
Schreiner, PR .
ORGANIC LETTERS, 2000, 2 (15) :2201-2204
[57]   ENERGIES AND PROPERTIES OF IONS INVOLVED IN ELECTROPHILIC HALOGENATIONS - SINGLET AND TRIPLET-STATES OF HALOGEN CATIONS (X+, X3+, AND X4(2+)) AND HYDROHALONIUM IONS (HX2+ AND H2X+) [J].
LI, Y ;
WANG, X ;
JENSEN, F ;
HOUK, KN ;
OLAH, GA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (10) :3922-3926
[58]  
LIAS SG, 1988, J PHYS CHEM REF DATA, V17, P1
[59]   ABINITIO SCF AND CI STUDY OF THE CYCLOPROPANE TRIMETHYLENE RADICAL CATIONS [J].
LUNELL, S ;
YIN, L ;
HUANG, MB .
CHEMICAL PHYSICS, 1989, 139 (2-3) :293-299
[60]   3-CENTER, 2-ELECTRON C-H-C BONDS IN ORGANIC-CHEMISTRY [J].
MCMURRY, JE ;
LECTKA, T .
ACCOUNTS OF CHEMICAL RESEARCH, 1992, 25 (01) :47-53