On the electrophilicity of hydroxyl radical: A laser flash photolysis and computational study

被引:84
作者
DeMatteo, MP [1 ]
Poole, JS [1 ]
Shi, XF [1 ]
Sachdeva, R [1 ]
Hatcher, PG [1 ]
Hadad, CM [1 ]
Platz, MS [1 ]
机构
[1] Ohio State Univ, Dept Chem, Columbus, OH 43210 USA
关键词
D O I
10.1021/ja043692q
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The rate coefficients for reactions of hydroxyl radical with aromatic hydrocarbons were measured in acetonitrile using a novel laser flash photolysis method. Comparison of kinetic data obtained in acetonitrile with those obtained in aqueous solution demonstrates an unexpected solvent effect on the reactivity of hydroxyl radical. In particular, reactions of hydroxyl radical with benzene were faster in water than in acetonitrile, and by a significant factor of 65. Computational studies, at the B3LYP and CBS-QB3 levels, have confirmed the rate enhancement of hydroxyl radical addition to benzene via calculation of the transition states in the presence of explicit solvent molecules as well as a continuum dielectric field. The origin of the rate enhancement lies entirely in the structures of the transition states and not in the pre-reactive complexes. The calculations reveal that the hydroxyl radical moiety becomes more anionic in the transition state and, therefore, looks more like hydroxide anion. In the transition states, solvation of the incipient hydroxide anion is more effective with water than with acetonitrile and provides the strong energetic advantage for a polar solvent capable of hydrogen bonding, At the same time, the aromatic unit looks more like the radical cation in the transition state. The commonly held view that hydroxyl radical is electrophilic in its reactions with DNA bases is, therefore, strongly dependent on the ability of the organic substrate to stabilize the resulting radical cation.
引用
收藏
页码:7094 / 7109
页数:16
相关论文
共 75 条
[1]  
Adams GE, 1977, FREE RADICALS BIOL, P53
[2]   Radical-water complexes in Earth's atmosphere [J].
Aloisio, S ;
Francisco, JS .
ACCOUNTS OF CHEMICAL RESEARCH, 2000, 33 (12) :825-830
[3]   Mechanism of atmospheric photooxidation of aromatics: A theoretical study [J].
Andino, JM ;
Smith, JN ;
Flagan, RC ;
Goddard, WA ;
Seinfeld, JH .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (26) :10967-10980
[4]   Photochemistry of N-hydroxy-2(1H)-pyridone, a more selective source of hydroxyl radicals than N-hydroxypyridine-2(1H)-thione [J].
Aveline, BM ;
Kochevar, IE ;
Redmond, RW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1996, 118 (42) :10124-10133
[5]   Photochemistry of the nonspecific hydroxyl radical generator, N-hydroxypyridine-2(1H)-thione [J].
Aveline, BM ;
Kochevar, IE ;
Redmond, RW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1996, 118 (42) :10113-10123
[6]   Computational study of the mechanisms for the reaction of O2(3Σg) with aromatic radicals [J].
Barckholtz, C ;
Fadden, MJ ;
Hadad, CM .
JOURNAL OF PHYSICAL CHEMISTRY A, 1999, 103 (40) :8108-8117
[7]   C-H and N-H bond dissociation energies of small aromatic hydrocarbons [J].
Barckholtz, C ;
Barckholtz, TA ;
Hadad, CM .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1999, 121 (03) :491-500
[8]   A mechanistic study of the reactions of H, O (3p), and OH with monocyclic aromatic hydrocarbons by density functional theory [J].
Barckholtz, C ;
Barckholtz, TA ;
Hadad, CM .
JOURNAL OF PHYSICAL CHEMISTRY A, 2001, 105 (01) :140-152
[9]   CONTRIBUTIONS OF PULSE-RADIOLYSIS TO CHEMISTRY [J].
BAXENDALE, JH ;
RODGERS, MAJ .
CHEMICAL SOCIETY REVIEWS, 1978, 7 (02) :235-263
[10]   DENSITY-FUNCTIONAL THERMOCHEMISTRY .3. THE ROLE OF EXACT EXCHANGE [J].
BECKE, AD .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (07) :5648-5652