Kinetics and mechanism of oxidation of N-methylethylamine by bis(hydrogenperiodato)argentate(III) complex anion

被引:0
作者
Yukun Guo
Hongmei Shi
Shuying Huo
Shigang Shen
机构
[1] Hebei University,College of Chemistry and Environmental Science
[2] Hebei Medical University,School of Public Health
来源
Transition Metal Chemistry | 2011年 / 36卷
关键词
DNPH; KIO4; Mechanistic Picture; Mephenesin; Present Reaction System;
D O I
暂无
中图分类号
学科分类号
摘要
Oxidation of N-methylethylamine by bis(hydrogenperiodato)argentate(III) ([Ag(HIO6)2]5−) in alkaline medium results in demethylation, giving rise to formaldehyde and ethylamine as the oxidation products. The oxidation kinetics has been followed spectrophotometrically in the temperature range of 20.0–35.0 °C, and shows an overall second-order character: being first-order with respect to both Ag(III) and N-methylethylamine. The observed second-order rate constants k′ increase with increasing [OH−] of the reaction medium, but decrease with increasing the total concentration of periodate. An empirical rate expression for k′ has been derived as: k′ = (ka + kb[OH−])K1/{f([OH−])[IO4−]tot + K1}, where ka and kb are rate parameters, and K1 is an equilibrium constant. These parameters have been evaluated at all the temperatures studied, enabling calculation of activation parameters. A reaction mechanism is suggested to involve two pre-equilibria, leading to formation of an intermediate Ag(III) complex, namely [Ag(HIO6)(OH)(MeNHEt)]2−. In the subsequent rate-determining steps, this intermediate undergoes inner-sphere electron transfer from the coordinated amine to the metal center via two distinct routes, one of which is spontaneous while the other is mediated by a hydroxide ion.
引用
收藏
页码:59 / 64
页数:5
相关论文
共 55 条
[1]  
Shi H(2009)undefined Anal Biochem 387 178-undefined
[2]  
Xu X(2007)undefined J Inorg Biochem 101 165-undefined
[3]  
Ding X(2007)undefined Int J Chem Kinet 39 440-undefined
[4]  
Liu X(2009)undefined Transit Met Chem 34 91-undefined
[5]  
Li L(2008)undefined Chin J Chem 26 615-undefined
[6]  
Kang W(2009)undefined Transit Met Chem 34 821-undefined
[7]  
Shi H(2009)undefined J Hebei Univ 29 311-undefined
[8]  
Shen S(1966)undefined J Pharm Sci 55 1240-undefined
[9]  
Sun H(1983)undefined J Chromatogr 254 179-undefined
[10]  
Liu Z(2003)undefined Foren Sci Int 33 101-undefined