首页> 外文期刊>Journal of the American Chemical Society >Helical conformational dynamics and photoisomerism of alternating pyridinedicarboxamide/m-(phenylazo)azobenzene oligomers
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Helical conformational dynamics and photoisomerism of alternating pyridinedicarboxamide/m-(phenylazo)azobenzene oligomers

机译:吡啶二甲酰胺/间-(苯基偶氮)偶氮苯低聚物交替的螺旋构象动力学和光异构

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Alternating sequences of pyridine-2,6-dicarboxamides and meta-(phenylazo)azobenzenes have been assembled into oligomers composed of four (8) and eight (9) azobenzene linkages. X-ray crystallography confirmed that oligomer 8 adopts a two-turn helical conformation with a helical pitch of approximately 3.4 angstrom in the solid state. The presence of a two- and four-turn helical conformation of 8 and 9, respectively, in polar and nonpolar solvents was elucidated by the anisotropic upfield shifting of protons located within the helices, NOE enhancements between protons oriented toward the helix interior, and the diastereotopicity of the terminal benzyloxycarbonyl (CBz) methylene protons. H-1 NMR line shape analysis of the CBz methylene hydrogens at the chain ends revealed a dynamic equilibria interconverting M and P helical conformations with energetic barriers (Delta G(double dagger)) of 11.1 (AS(double dagger) = -19.4 +/- 1.6 cal mol(-1) K-1; Delta H-double dagger = 6.5 +/- 0.4 kcal/mol) for 8 and 13.8 kcal/mol (Delta S-double dagger = -6.6 +/- 6.2 cal mol(-1) K-1; Delta H-double dagger = 11.8 +/- 1.8 kcal/mol) for 9. Irradiation of the oligomers with 350 nm light induces an E -> Z isomerization of the azo linkages that decreases in efficacy at longer helix lengths. The suppression of E -> Z isomerization is a consequence of the contrasting behavior of the azo linkages located at the helix termini, which afford Z/E ratios similar to those of model compound 7d, and the internal azo groups, which undergo significantly lower Z/E conversion ratios compared with 7e.
机译:吡啶-2,6-二甲酰胺和间-(苯基偶氮)偶氮苯的交替序列已被组装成由四(8)和八(9)偶氮苯键组成的低聚物。 X射线晶体学证实,低聚物8在固态下采用两匝螺旋构象,其螺旋节距约为3.4埃。极性和非极性溶剂中分别存在8和9的两匝和四匝螺旋构象,这是通过位于螺旋内的质子各向异性高场位移,朝向螺旋内部定向的质子之间的NOE增强以及末端苄氧羰基(CBz)亚甲基质子的非对映异构性。对链末端CBz亚甲基氢的H-1 NMR线形分析显示,动态平衡使M和P螺旋构象相互转化,且能量势垒(Delta G(双匕首))为11.1(AS(双匕首)= -19.4 + / -1.6 cal mol(-1)K-1; Delta H-double dagger = 6.5 +/- 0.4 kcal / mol)对于8和13.8 kcal / mol(Delta S-double dagger = -6.6 +/- 6.2 cal mol( -1)K-1; 9的Delta H-双匕首= 11.8 +/- 1.8 kcal / mol)。用350 nm的光照射低聚物会诱导偶氮键的E-> Z异构化,从而使效力降低,时间越长螺旋长度。 E→Z异构化的抑制是位于螺旋末端的偶氮键的对比行为的结果,该偶氮键的Z / E比值与模型化合物7d相似,而内部偶氮基团的Z值明显降低/ E转换率,与7e相比。

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