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Model Studies on the Dimerization of 1,3-Diacetylenes

机译:1,3-二乙炔二聚的模型研究

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By means of high-level quantum chemical calculations (B2PLYPD and CCSD(T)), the dimerization Of 1,3-diacetylenes was studied and compared to the dimerization of acetylene. We found that substituted 1,3-diacetylenes are more reactive than the corresponding substituted acetylenes having an isolated triple bond. The most reactive centers for a dimerization are always the terminal carbon atoms. The introduction of a test reaction allows the calculation of the relative reactivity of individual carbon centers in phenylacetylene, phenylbutadiyne, and phenylhexatriyne. A comparison shows that the reactivity of the terminal carbon atoms increases with increasing numbers of alkyne units, whereas the reactivity of the internal carbon atoms remains very low independent of the number of alkyne units.
机译:通过高级量子化学计算(B2PLYPD和CCSD(T)),研究了1,3-二乙炔的二聚化并将其与乙炔的二聚化进行了比较。我们发现,取代的1,3-二乙炔比具有孤立的三键的相应取代的乙炔更具反应性。用于二聚化的最活泼的中心总是末端碳原子。通过引入测试反应,可以计算出苯基乙炔,苯基丁二炔和苯基己三炔中各个碳中心的相对反应性。比较表明,末端碳原子的反应性随炔烃单元数目的增加而增加,而内部碳原子的反应性与炔烃单元的数目无关地保持非常低。

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