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O-乙基S-(2,4-二硝基苯基)和O-乙基S-(2,4,6-三硝基苯基)二硫代碳酸酯以及O-甲基O-(2,4-二硝基苯基)硫代碳酸酯的苯硫醇解动力学及机理

Kinetics and mechanism of the benzenethiolysis of O-ethylS-(2,4-dinitrophenyl) and O-ethyl S-(2,4,6-trinitrophenyl) dithiocarbonates and O-methyl O-(2,4-dinitrophenyl) thiocarbonate.

作者信息

Castro Enrique A, Pavez Paulina, Santos José G

机构信息

Facultad de Química, Pontificia Universidad Católica de Chile, Casilla 306, Santiago 22, Chile.

出版信息

J Org Chem. 2003 Nov 14;68(23):9034-9. doi: 10.1021/jo0352530.

Abstract

Reactions of O-ethyl 2,4-dinitrophenyl dithiocarbonate (EDNPDTC), O-ethyl 2,4,6-trinitrophenyl dithiocarbonate (ETNPDTC), and O-methyl O-(2,4-dinitrophenyl) thiocarbonate (MDNPTOC) with a series of benzenethiolate anions in aqueous solution, at 25.0 degrees C and an ionic strength of 0.2 M (KCl), are subjected to a kinetic investigation. Under excess benzenethiolate, these reactions obey pseudo-first-order kinetics and are first order in benzenethiolate. Nonetheless, similar reactant concentrations were used in the reactions of 4-nitrobenzenethiolate anion with the ethyl trinitrophenyl ester (ETNPDTC), which showed overall second-order kinetics. The nucleophilic rate constants (k(N)) are pH independent, except those for the reactions of ETNPDTC with the X-benzenethiolates with X = H, 4-Cl, and 3-Cl, which increase as pH decreases. The Brønsted-type plots (log k(N) vs pK(a) of benzenethiols) are linear with slopes beta = 0.66 for the reactions of both ethyl dinitrophenyl ester (EDNPDTC) and ethyl trinitrophenyl ester (ETNPDTC) and beta = 0.58 for those of the thiocarbonate ester (MDNPTOC). For the benzenethiolysis of MDNPTOC and EDNPDTC, no breaks were found in the Brønsted-type plots at pK(a) 4.1 and 3.4, respectively, consistent with concerted mechanisms. Benzenethiolysis of the ethyl trinitrophenyl ester (ETNPDTC) should also be concerted in view of the even more unstable tetrahedral "intermediate" that would have been formed had this reaction been stepwise. ETNPDTC is more reactive toward benzenethiolate anions than EDNPDTC due to the better leaving group involved in the former substrate. The k(N) values found for the reactions of EDNPDTC with benzenethiolates are larger than those obtained for the concerted reactions of the same substrate with isobasic phenoxide anions. This is explained by Pearson's "hard and soft acids and bases" principle. The concerted mechanism for the benzenethiolysis of MDNPTOC, in contrast to the stepwise mechanism found for the phenolysis of this substrate, is attributed to the greater kinetic instability of the hypothetical tetrahedral "intermediate" formed in the former reaction, due to the greater nucleofugality of ArS(-) compared with an isobasic ArO(-). Benzenethiolates are more reactive toward MDNPTOC and EDNPDTC than the corresponding carbonate and thiolcarbonate, respectively. This is also in accordance with the HSAB principle, since benzenthiolates are relatively soft bases that prefer to bind to a relatively soft thiocarbonyl center rather than a relatively hard carbonyl center.

摘要

对2,4 - 二硝基苯基二硫代碳酸O - 乙酯(EDNPDTC)、2,4,6 - 三硝基苯基二硫代碳酸O - 乙酯(ETNPDTC)和O - 甲基O - (2,4 - 二硝基苯基)硫代碳酸酯(MDNPTOC)与一系列苯硫酚阴离子在25.0℃、离子强度为0.2 M(KCl)的水溶液中的反应进行了动力学研究。在苯硫酚阴离子过量的情况下,这些反应遵循准一级动力学,且对苯硫酚阴离子为一级反应。然而,4 - 硝基苯硫酚阴离子与三硝基苯基乙酯(ETNPDTC)的反应使用了相似的反应物浓度,该反应呈现出整体二级动力学。亲核速率常数(k(N))与pH无关,但ETNPDTC与X = H、4 - Cl和3 - Cl的X - 苯硫酚反应的速率常数随pH降低而增大。对于二硝基苯基乙酯(EDNPDTC)和三硝基苯基乙酯(ETNPDTC)的反应,布朗斯特类型图(log k(N)对苯硫酚的pK(a))呈线性,斜率β = 0.66;对于硫代碳酸酯(MDNPTOC)的反应,斜率β = 0.58。对于MDNPTOC和EDNPDTC的苯硫解反应,在pK(a)分别为4.1和3.4时,布朗斯特类型图中未发现断裂,这与协同机理一致。鉴于如果三硝基苯基乙酯(ETNPDTC)的苯硫解反应是分步进行的,将会形成更不稳定的四面体“中间体”,所以该反应也应是协同的。由于前一种底物中涉及更好的离去基团,ETNPDTC对苯硫酚阴离子的反应性比EDNPDTC更高。EDNPDTC与苯硫酚阴离子反应的k(N)值大于相同底物与等碱性酚氧基阴离子协同反应得到的值。这可以用皮尔逊的“硬软酸碱”原理来解释。与该底物的酚解反应中发现的分步机理相反,MDNPTOC苯硫解反应的协同机理归因于前一反应中形成的假设四面体“中间体”具有更大的动力学不稳定性,这是因为与等碱性的ArO(-)相比,ArS(-)的亲核离去能力更强。苯硫酚阴离子对MDNPTOC和EDNPDTC的反应性分别比对相应的碳酸酯和硫代碳酸酯更高。这也符合HSAB原理,因为苯硫酚阴离子是相对较软的碱,更倾向于与相对较软的硫羰基中心结合,而不是相对较硬的羰基中心。

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