Schilf W, Kamieñski B, Szady-Chelmieniecka A, Grech E
Institute of Organic Chemistry, Polish Academy of Sciences, Warsaw.
Solid State Nucl Magn Reson. 2000;18(1-4):97-105. doi: 10.1006/snmr.2000.0014.
Two Schiff bases, N,N'-bis(5-bromosalicylidene)-1,2-diaminoethane, BS, and 7-[(1-[5-bromo-2-hydroxyphenyl] methylidene)amino]-4-methylcoumarin, Sc, and two appropriate Schiff-Mannich bases, N,N'-bis[5-bromo-3-[(diethylamino)methyl]salicylidene]-1,2-diaminoethane, BSM, and 7-[(1-[5-bromo-3-[(diethylamino)methyl]-2-hydroxyphenyl] methylidene)amino]-4-methylcoumarin, SMc, capable of intramolecular hydrogen bonding have been investigated by multinuclear magnetic resonance methods in both solid and liquid phases. In all of the compounds under investigation tautomeric equilibrium involving an intramolecular hydrogen bond has been found. The Schiff-Mannich bases, which can form two different kinds of H bonds at room temperature, form relatively weak H bonds with the imino nitrogen atoms. At low temperatures the tautomeric proton exchange becomes slow on the NMR time scale and both hydrogen-bonded forms can be observed by 1H, 13C, and 15N NMR methods. In the solid state the tautomeric process is frozen and only one H-bonded form is present. On the basis of 13C and 15N CPMAS NMR spectra this is identified as the form with hydrogen bonds involving the imino groups. This conclusion is in good agreement with previous results obtained by X-ray diffraction methods. The investigated Schiff bases (BS and Sc) form relatively weak H bonds. The proton position in the hydrogen bridge, estimated from 15N and 13C chemical shifts, is very similar in both the solution and solid phases. In chloroform solution the observed tautomeric equilibria are almost insensitive to a temperature change within the range 223 to 303 K.
通过多核磁共振方法对两种席夫碱,即N,N'-双(5-溴水杨醛)-1,2-二氨基乙烷(BS)和7-[(1-[5-溴-2-羟基苯基]亚甲基)氨基]-4-甲基香豆素(Sc),以及两种相应的席夫-曼尼希碱,即N,N'-双[5-溴-3-[(二乙氨基)甲基]水杨醛]-1,2-二氨基乙烷(BSM)和7-[(1-[5-溴-3-[(二乙氨基)甲基]-2-羟基苯基]亚甲基)氨基]-4-甲基香豆素(SMc)进行了研究,这些化合物能够形成分子内氢键,研究涉及固液两相。在所研究的所有化合物中均发现了涉及分子内氢键的互变异构平衡。席夫-曼尼希碱在室温下可形成两种不同类型的氢键,它们与亚氨基氮原子形成相对较弱的氢键。在低温下,互变异构质子交换在核磁共振时间尺度上变得缓慢,通过1H、13C和15N核磁共振方法可以观察到两种氢键形式。在固态中,互变异构过程被冻结,仅存在一种氢键形式。基于13C和15N CPMAS核磁共振谱,确定这种形式是涉及亚氨基的氢键形式。这一结论与先前通过X射线衍射方法获得的结果高度一致。所研究的席夫碱(BS和Sc)形成相对较弱的氢键。根据15N和13C化学位移估计的氢桥中质子位置,在溶液和固态相中非常相似。在氯仿溶液中,观察到互变异构平衡在223至303 K范围内几乎对温度变化不敏感。