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Cyclopropenylidenes: From interstellar space to an isolated derivative in the laboratory

机译:环丙烯亚基:从星际空间到实验室中的孤立衍生物

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Like many of the molecular species that have been detected in the interstellar medium, the singlet carbene cyclopropenylidene (C3H2) has been presumed to be too unstable to isolate in the laboratory. However, by appending pi-electron-donating amino groups to the triangular skeleton, we prepared a cyclopropenylidene derivative that is stable at room temperature. In contrast to previously isolated carbenes, this compound does not require a heteroatom adjacent to the electron-deficient carbon to confer stability. Despite the presence of amino groups, the geometric parameters of the cyclic skeleton, revealed by x-ray crystallography, are only slightly perturbed relative to those of the calculated structure of unsubstituted cyclopropenylidene. Stable cyclopropenylidene derivatives might thus serve as models for a better understanding of the formation of carbon-bearing molecules in the interstellar medium.
机译:像在星际介质中检测到的许多分子种类一样,单线态卡宾环丙烯基(C3H2)被认为过于不稳定,无法在实验室中分离出来。但是,通过将给电子体提供的氨基附加到三角形骨架上,我们制备了在室温下稳定的环丙烯基衍生物。与以前分离的卡宾相反,该化合物不需要与缺电子的碳相邻的杂原子来赋予稳定性。尽管存在氨基,但是通过X射线晶体学揭示的环状骨架的几何参数相对于未取代的环丙烯基的计算结构而言仅受到轻微干扰。因此,稳定的环丙烯基衍生物可以作为模型,以更好地理解星际介质中含碳分子的形成。

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