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2-(烷硫基)-5-氨基-1-乙烯基吡咯的 1H 和 13C NMR 谱中分子内 C-H···N 和 C-H···S 氢键效应的实验和理论研究:胺氮的特殊状态。

Experimental and theoretical study of the intramolecular C-H···N and C-H···S hydrogen bonding effects in the 1H and 13C NMR spectra of the 2-(alkylsulfanyl)-5-amino-1-vinylpyrroles: a particular state of amine nitrogen.

机构信息

A.E. Favorsky Irkutsk Institute of Chemistry, Siberian Branch of the Russian Academy of Sciences, Favorsky St 1, 664033, Irkutsk, Russia.

出版信息

Magn Reson Chem. 2013 Jul;51(7):414-23. doi: 10.1002/mrc.3967. Epub 2013 May 22.

Abstract

In the (1)H NMR spectra of the 1-vinylpyrroles with amino- and alkylsulfanyl groups in 5 and 2 positions, an extraordinarily large difference between resonance positions of the HA and HB terminal methylene protons of the vinyl group is discovered. Also, the one-bond (1)J(C(β),H(B)) coupling constant is surprisingly greater than the (1)J(C(β),H(A)) coupling constant in pyrroles under investigation, while in all known cases, there was a reverse relationship between these coupling constants. These spectral anomalies are substantiated by quantum chemical calculations. The calculations show that the amine nitrogen lone pair is removed from the conjugation with the π-system of the pyrrole ring so that it is directed toward the HB hydrogen. These factors are favorable to the emergence of the intramolecular C-HB •••N hydrogen bonding in the s-cis(N) conformation. On the other hand, the spatial proximity of the sulfur to the HB hydrogen provides an opportunity of the intramolecular C-HB •••S hydrogen bonding in the s-cis(S) conformation. Presence of the hydrogen bond critical points as well as ring critical point for corresponding chelate ring revealed by a quantum theory of atoms in molecules (QTAIM) approach confirms the existence of the weak intramolecular C-H•••N and C-H•••S hydrogen bonding. Therefore, an unusual high-frequency shift of the HB signal and the increase in the (1)J(C(β),H(B)) coupling constant can be explained by the effects of hydrogen bonding.

摘要

在 5 位和 2 位具有氨基和烷基硫基的 1-乙烯基吡咯的 1H NMR 谱中,发现乙烯基的 HA 和 HB 末端亚甲基质子的共振位置之间存在非常大的差异。此外,在研究中的吡咯中,单键(1)J(C(β),H(B))偶合常数出奇地大于(1)J(C(β),H(A))偶合常数,而在所有已知情况下,这些偶合常数之间存在相反的关系。这些光谱异常通过量子化学计算得到证实。计算表明,胺氮孤对从与吡咯环的π系统的共轭中被除去,因此它指向 HB 氢。这些因素有利于在 s-cis(N)构象中出现分子内 C-HB···N 氢键。另一方面,硫与 HB 氢的空间接近提供了在 s-cis(S)构象中形成分子内 C-HB···S 氢键的机会。通过分子中原子的量子理论(QTAIM)方法揭示的氢键临界点以及对应螯合环的环临界点证实了弱的分子内 C-H···N 和 C-H···S 氢键的存在。因此,HB 信号的异常高频位移和(1)J(C(β),H(B))偶合常数的增加可以通过氢键的影响来解释。

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