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首页> 外文期刊>Chemistry: A European journal >Conformational and electronic consequences in crafting extended, π-conjugated, light-harvesting macrocycles
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Conformational and electronic consequences in crafting extended, π-conjugated, light-harvesting macrocycles

机译:制作扩展的,π共轭的光捕获大环的构象和电子后果

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摘要

The synthesis of a new series of free-base, Ni~(II) and Zn~(II) 2,3,12,13-tetra(ethynyl)-5,10,15,20-tetraphenyl porphyrins is described. Upon heating, two of the four ethynyl moieties undergo Bergman cyclization to afford the monocyclized 2,3-diethynyl-5,20-diphenylpiceno[10,11, 12,13,14,15-jklmn]porphyrin in 30%, 10%, and trace yields, respectively. The structures of all products were investigated by using quantum chemical calculations and the free-base analogue was isolated and crystallized; all compounds show significant deviation from the idealized planar structure. No fully-cyclized bispiceno[20,1,2,3,4,5,10,11,12,13,14,15-fghij]porphyrin was isolated from the reaction mixture. To understand why only two of the four enthynyl groups undergo Bergman cyclization, the reaction coordinates were examined by using DFT at the PWPW91/cc-pVTZ(-f) level coupled to a continuum solvation model. The barrier to cyclization of the second pair of ethynyl groups was found to be 5.5 kcal mol -1 higher than the first, suggesting a negative cooperative effect and significantly slower rate for the second cyclization. Cyclization reactions for model porphyrin-enediynes with ethene- and H-functionality substitutions at the meso-phenyl rings were also examined, and found to have a similar barrier to diradical formation for the second cyclization event as for the first in these highly planar molecules. By enforcing an artificial 30° cant in two of the pyrrole rings of the porphyrin, the second barrier was increased by 2 kcal mol -1 in the ethene model system; this suggests that the disruption of the π conjugation of the extended porphyrin structure is the cause of the increased barrier to the second cyclization event.
机译:描述了一系列新的游离碱Ni〜(II)和Zn〜(II)2,3,12,13-四(乙炔基)-5,10,15,20-四苯基卟啉的合成。加热后,四个乙炔基中的两个会进行Bergman环化,以30%,10%的浓度提供单环化的2,3-二乙炔基-5,20-二苯基吡啶甲酸酯[10,11,12,13,14,15-jklmn]卟啉,和痕量产量。通过量子化学计算研究了所有产物的结构,并分离并结晶了游离碱类似物。所有化合物均显示出与理想平面结构的显着偏离。没有从反应混合物中分离出完全环化的比斯匹诺[20,1,2,3,4,5,10,11,12,13,14,15-fghij]卟啉。为了理解为什么四个乙炔基中只有两个会进行Bergman环化,通过在PWPW91 / cc-pVTZ(-f)水平上使用DFT结合连续溶剂化模型来检查反应坐标。发现第二对乙炔基环化的障碍比第一对高5.5 kcal mol -1,这表明第二对环化具有负面的协同作用,且速率明显降低。还研究了在中苯基环上具有乙烯和H-官能团取代的模型卟啉-烯二炔的环化反应,发现在这些高度平面的分子中,第二个环化事件与双自由基形成的自由基形成障碍相似。通过在卟啉的两个吡咯环中施加一个30°的人工倾斜,在乙烯模型系统中,第二个势垒增加了2 kcal mol -1。这表明扩展的卟啉结构的π共轭的破坏是增加对第二个环化事件的屏障的原因。

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