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首页> 外文期刊>Journal of Molecular Structure >Conformational studies of aminomethylene-malonic acid dimethylester and its N-methyl derivatives using vibrational spectroscopy, X-ray analysis and ab initio calculations
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Conformational studies of aminomethylene-malonic acid dimethylester and its N-methyl derivatives using vibrational spectroscopy, X-ray analysis and ab initio calculations

机译:使用振动光谱,X射线分析和从头算计算的氨基亚甲基丙二酸二甲酯及其N-甲基衍生物的构象研究

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The IR and Raman spectra of aminomethylene-malonic acid dimethylester (AMDME) [NH2ACH@C(COOCH3)2] and its N-methyl derivatives (MAMDME and DMAMDME) were measured in solid phase and in different solvents at various temperatures. X-ray analysis revealed that AMDME exists in solid phase as EZ conformer, MAMDME as ZZa conformer and DMAMDME as ZE conformer (the first and second E or Z letters express the orientation of the carbonyl oxygen to the C@C double bond for trans and cis methylester group, respectively, and the third letter a denotes anti position of methylamino group with respect to the C@C double bond). In less polar solutions dominantly two ZZ and EZ conformational forms of AMDME and ZZa and EZa of MAMDME are observed, whereas in more polar environments a third conformational form (ZE and ZEa, respectively) also appeared. The behaviour of DMAMDME is different because there is no intramolecular hydrogen bond and in less polar solutions exists in two ZZ and ZE conformational forms. Very weak indications of a third conformational form (probably EZ conformer) were observed only in more polar surroundings. From the solution IR temperature dependent spectra the energy difference between ZE and ZZ conformers of DH = 1.8 ± 0.5 kJ mol~(-1) in chloroform and DH = 4.2 ± 0.5 kJ mol~(-1) in acetonitrile was estimated with the ZZ one being more stable.The geometries and relative energies of the possible conformers of all three compounds were evaluated using ab initio MP2 and DFT B3LYP methods in 6-31G~(**) basis set with PCM solvent effect inclusion. The influence of environment polarity on the conformational equilibrium is discussed.
机译:在不同温度下,在固相和不同溶剂中测量了氨基亚甲基丙二酸二甲酯(AMDME)[NH2ACH @ C(COOCH3)2]及其N-甲基衍生物(MAMDME和DMAMDME)的IR和拉曼光谱。 X射线分析表明,AMDME作为EZ构象体存在于固相中,MAMDME作为ZZa构象体存在,而DMAMDME作为ZE构象体存在(第一个和第二个E或Z字母表示羰基氧对C @ C双键的反式和反向取向)。分别为顺式甲基酯基和第三个字母a表示甲氨基相对于C @ C双键的反位置)。在极性较小的溶液中,主要观察到AMDME的两种ZZ和EZ构象形式,以及MAMDME的ZZa和EZa,而在极性更大的环境中,也出现了第三种构象形式(分别为ZE和ZEa)。 DMAMDME的行为不同,因为没有分子内氢键,并且在极性较小的溶液中以ZZ和ZE两种构象形式存在。仅在极性更强的环境中观察到非常弱的第三种构象形式(可能是EZ构象体)的迹象。从溶液的红外温度相关光谱中,用ZZ估计DH和ZE构象异构体之间的能量差,DH在氯仿中= 1.8±0.5 kJ mol〜(-1),在乙腈中DH = 4.2±0.5 kJ mol〜(-1)。使用从头算的MP2和DFT B3LYP方法在6-31G〜(**)的基础上(包括PCM溶剂效应在内)评估了这三种化合物可能构象的几何构型和相对能。讨论了环境极性对构象平衡的影响。

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