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首页> 外文期刊>Journal of Molecular Structure >Solvent-induced E/Z isomerization of 2-(furylmethylidene)-1-hydrazinecarbothioamide: The N-H center dot center dot center dot O intramolecular hydrogen bond as promoting factor
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Solvent-induced E/Z isomerization of 2-(furylmethylidene)-1-hydrazinecarbothioamide: The N-H center dot center dot center dot O intramolecular hydrogen bond as promoting factor

机译:溶剂诱导的E / Z异构化为2-(呋喃甲基)-1-肼基氨基噻嗪酰胺:N-H中心点中心点中心点O分子内氢键作为促进因子

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摘要

It is proved by the H-1 and C-13 data that the thiosemicarbazone with the furyl substituent is synthesized as the E isomer. However, this thiosemicarbazone undergoes the solvent-induced E/Z isomerization when standing in chloroform, despite the fact that the other thiosemicarbazones with a heteroaryl or aryl substituent do not exhibit such phenomenon. It is established that the N-H center dot center dot center dot O intramolecular hydrogen bond in the Z isomer of furyl thiosemicarbazone promotes the E/Z isomerization. As it is shown by calculations, the energy difference between the E and Z isomers is negligible in this case, although the E isomer is significantly preferable in energy (by 2.5-5.2 kcal mol(-1)) in the other thiosemicarbazones. At the same time, no E/Z isomerization is observed when the furyl thiosemicarbazone stands in the DMSO-d 6 solution. The formation of a strong hydrogen-bonded complex of furyl thiosemicarbazone with the DMSO molecule via the N-H center dot center dot center dot O intermolecular hydrogen bond leads to the fact that the E -> Z conversion becomes an energy unfavorable process. A comparison of the calculated H-1 and C-13 chemical shifts in the different conformations with measured values indicates that the syn(O,N)-conformation of the Z isomer of furyl thiosemicarbazone is stabilized by the N-H center dot center dot center dot O intramolecular hydrogen bond. However, a conformational equilibrium between the syn(O,N)- and anti(O,N)-forms is of the case for the E isomer. Thus, furyl thiosemicarbazone is an example of molecular switch controlled by interaction with the environment, rather than using hard UV radiation. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过H-1和C-13数据证明,硫代吡喃丙酮与呋喃基取代基合成为E异构体。然而,这种硫代术鲍氏虫在站立氯仿时经历溶剂诱导的E / Z异构化,尽管与杂芳基或芳基取代基的其他硫代氧拓不表现出这样的现象。建立N-H中心点中心点中心点O呋喃硫代吡嗪Z异构体中的分子内氢键促进E / Z异构化。如通过计算所示,在这种情况下,E和Z异构体之间的能量差可忽略不计,尽管在另一颗粒中的能量中显着优选E异构体(通过2.5-5.2kcal(-1))。同时,当紫罗兰硫代吡吡唑替氏溶液在DMSO-D溶液中静置时,不观察到E / Z异构化。通过N-H中心点中心点中心点O分子间氢键与DMSO分子形成强氢键络合物的呋喃酰基氧化拓络合物,导致E - > Z转换成为能量不利的过程的事实。计算出的H-1和C-13化学位移在具有测量值的不同构象中的比较表明,NH中心点中心点中心点稳定了呋喃基硫代虫毒虫的Z异构体的SYN(O,N)官能化o分子内氢键。然而,SYN(O,N)和抗(O,N) - 变形之间的构象平衡是E异构体的情况。因此,呋喃基硫代吡吩是通过与环境相互作用控制的分子开关的示例,而不是使用硬紫外线辐射。 (c)2020 Elsevier B.v.保留所有权利。

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