Solvent and Temperature Dependencies of the Rates of Thermal Cis-to-Trans Isomerization of Tetra-(ortho)substituted 4-Aminoazobenzenes Containing 2,6-Dimethoxy Groups.

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry B Pub Date : 2024-08-08 Epub Date: 2024-07-30 DOI:10.1021/acs.jpcb.4c02951
Sandra Ramírez-Rave, Luis Ramón Ortega-Valdovinos, Ana P González-Castro, Anatoly K Yatsimirsky
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Abstract

The kinetics of thermal cis-to-trans isomerization of two tetra-(ortho)substituted 4-aminoazobenzene derivatives containing 2,6-dimethoxy groups in the 4-aminobenzene ring and either 2',6'-dimethyl (1) or 2',6'-dichloro groups in another ring was studied in 16 and 9 solvents, respectively, at room temperature. In addition, the kinetics of isomerization of 1 was studied at variable temperatures in 6 solvents. The solvent effects were analyzed in terms of multiparameter correlations using the Kamlet-Taft, Catalan, and Laurence scales. The temperature dependencies were analyzed in terms of the isokinetic relationship by using Exner's method. The correlation analysis was also extended to several previously reported systems, including isomerization of unsubstituted 4-aminoazobenzene and push-pull 4-NR2-4'-NO2 azobenzenes. It was established that for all 4-aminoazobenzenes in contrast to push-pull azobenzenes, the increase in solvent dipolarity does not affect or even inhibit isomerization rates; however, the increase in solvent acidity induces large rate accelerations. The isokinetic relationship holds only in aprotic solvents, while in alcohols and water, the temperature dependencies do not pass through the common point at T = Tiso, indicating different mechanisms operating in protic and aprotic solvents. The acceleration effect by protic solvents does not represent a type of general acid catalysis as follows from the small solvent isotope effect kH/kD = 1.26 in water. It is suggested that protic solvents induce a change in the reaction mechanism supposedly from inversion to rotation by hydrogen bonding stabilization of the negative charge developed on the azo group in a resonance structure involving a 4-amino group.

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含 2,6-二甲氧基基团的四(正交)取代 4-氨基偶氮苯的热顺反异构化速率的溶剂和温度依赖性。
室温下,分别在 16 种和 9 种溶剂中研究了两种四(正)取代的 4-氨基偶氮苯衍生物的热顺反异构动力学,这两种衍生物的 4-氨基苯环上含有 2,6-二甲氧基,另一个环上含有 2',6'-二甲基(1)或 2',6'-二氯基团。此外,还在 6 种溶剂中研究了 1 在不同温度下的异构化动力学。使用 Kamlet-Taft、Catalan 和 Laurence 标度对溶剂效应进行了多参数相关分析。使用 Exner 方法从等动力学关系的角度分析了温度依赖性。相关分析还扩展到了之前报道的几个系统,包括未取代的 4-氨基偶氮苯的异构化和推拉式 4-NR2-4'-NO2 偶氮苯。结果表明,对于所有 4-氨基偶氮苯,与推挽偶氮苯相比,溶剂偶极性的增加不会影响甚至抑制异构化速率;然而,溶剂酸性的增加会导致速率大幅加快。等速关系仅在非沸腾溶剂中成立,而在醇类和水中,温度依赖关系并不通过 T = Tiso 的共同点,这表明在原生溶剂和非沸腾溶剂中存在不同的作用机制。从水中较小的溶剂同位素效应 kH/kD = 1.26 可以看出,质子溶剂的加速效应并不代表一般的酸催化作用。有观点认为,原生质溶剂可以通过氢键稳定偶氮基团上的负电荷,从而引起反应机理的改变,即从反转到旋转。
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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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