Autoxidation of hydrazones. Some new insights

被引:38
作者
Harej, Maja [1 ]
Dolenc, Darko [1 ]
机构
[1] Univ Ljubljana, Fac Chem & Chem Technol, SL-1000 Ljubljana, Slovenia
基金
中国国家自然科学基金;
关键词
ATOM TRANSFER CHEMISTRY; OXYGEN; RADICALS; LIPIDS; PHENYLHYDRAZONES; HYDROPEROXIDES; ARYLHYDRAZONES; ABSTRACTION; OXIDATION;
D O I
10.1021/jo071091m
中图分类号
O62 [有机化学];
学科分类号
070303 [有机化学];
摘要
[GRAPHICS] Autoxidation of hydrazones is a generally occurring reaction, leading mostly to the formation of alpha-azohydroperoxides. All structural kinds of hydrazones, having at least one hydrogen atom on nitrogen, are prone to autoxidation; however, there are marked differences in the rate of the reaction. Hydrazones of aliphatic ketones are 1-2 orders of magnitude more reactive than analogous derivatives of aromatic ketones. Even less reactive are the hydrazones of chalcones, which function also as efficient inhibitors of autoxidation of other hydrazones. These differences can be attributed to the reduction of the rate of the addition of oxygen to a hydrazonyl radical, which is a reversible reaction. In the case of conjugated ketones, it becomes endothermic, making this elementary step slow down and the chain termination reactions become important. Substituents influence the stability of hydrazonyl radicals and, consequently, the bond dissociation energies of the N-H bonds. In acetophenone phenythydrazones, the substituents placed on the ring of hydrazine moiety exhibit a higher effect (Hammett p = -2.8) than those on the ketone moiety (p = -0.82), which denotes higher importance of the structure with spin density concentrated on nitrogen in delocalized hydrazonyl radical. Electronic effects of the substituents also affect the transition state for the abstraction of hydrogen atom by electrophilic peroxy radicals; NBO analysis display a negative charge transfer of about 0.4 eu from hydrazone to a peroxy radical in the transition state.
引用
收藏
页码:7214 / 7221
页数:8
相关论文
共 41 条
[1]
Adembri G., 1966, TETRAHEDRON, V22, P3149
[2]
Akoh CC., 2002, FOOD LIPIDS, V2nd
[3]
[Anonymous], FREE RADICALS BIOL M
[4]
OXYGEN-ATOM TRANSFER CHEMISTRY OF ALPHA-AZO HYDROPEROXIDES - EFFECT OF COMPETITIVE INTRAMOLECULAR HYDROGEN-BONDING AND ALPHA-METHYL SUBSTITUTION [J].
BAUMSTARK, AL ;
VASQUEZ, PC .
JOURNAL OF PHYSICAL ORGANIC CHEMISTRY, 1988, 1 (05) :259-265
[5]
SYNTHESIS OF PENTASUBSTITUTED 3-HYDROXY-1,2-DIOXOLANES [J].
BAUMSTARK, AL ;
VASQUEZ, PC .
JOURNAL OF ORGANIC CHEMISTRY, 1992, 57 (01) :393-395
[6]
ELECTROPHILIC OXYGEN-ATOM TRANSFER CHEMISTRY OF ALPHA-AZOHYDROPEROXIDES [J].
BAUMSTARK, AL .
BIOORGANIC CHEMISTRY, 1986, 14 (03) :326-343
[7]
Cyclohexylhydrazine [J].
Busch, M ;
Linsenmeier, K .
JOURNAL FUR PRAKTISCHE CHEMIE-LEIPZIG, 1927, 115 (7/9) :216-234
[8]
Autoxidation of hydrazone. [J].
Busch, M ;
Dietz, W .
BERICHTE DER DEUTSCHEN CHEMISCHEN GESELLSCHAFT, 1914, 47 :3277-3291
[9]
SYNTHETIC APPLICATIONS OF CONJUGATED AZOCARBINOLS - RADICAL CHAIN HYDROPHENYLATION AND HYDROCYCLOHEXENYLATION OF HALOETHENES [J].
CHANG, YM ;
PROFETTO, R ;
WARKENTIN, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1981, 103 (24) :7189-7195
[10]
SYNTHESIS OF SOME 5-SUBSTITUTED-2-METHYLTRYPTAMINES AND THEIR N-MONO- AND -DI-ALKYL DERIVATIVES [J].
CHAPMAN, NB ;
CLARKE, K ;
HUGHES, H .
JOURNAL OF THE CHEMICAL SOCIETY, 1965, (FEB) :1424-&