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Formation of an Isolable Divinylborinium Ion through Twofold 1,2-Carboboration between a Diarylborinium Ion and Diphenylacetylene

机译:在二芳基硼离子和二苯基乙炔之间通过双重1,2-剥离形成分离的二乙烯基硼吡啶鎓离子

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摘要

Borinium ions, that is, two-coordinate boron cations, are the most electron-deficient isolable boron compounds. As borinium ions have only four formal valence electrons on boron, they should show a strong tendency to accept electron pairs on the boron atom to fill its valence shell. Thus chemical reactions of borinium ions are expected to give products in which the coordination number of boron is increased from two to three or four. However, contrary to this expectation, we found that the dimesitylborinium ion (Mes(2)B(+)) undergoes twofold 1,2-carboboration reactions with two equivalents of diphenylacetylene to yield an unprecedented borinium ion (1(+)) with two substituted vinyl groups on the boron center. NMR spectroscopy and X-ray diffraction analysis of 1(+), together with electronic-structure calculations, revealed that the positive charge is delocalized over the entire -conjugated system. The fact that the chemical transformation of a borinium ion gives rise to a different borinium ion without a change in the coordination number is remarkable and should provide new insight into the chemistry of the Group13 elements.
机译:硼腹离子,即双坐标硼阳离子,是最缺乏的电子隔离硼化合物。由于硼离子在硼上仅具有四个正式的价值,因此它们应该显示出在硼原子上接受电子对以填充其价壳的强烈倾向。因此,预期硼藻离子的化学反应给出了其中硼的配位数量从两到三个或四个增加的产品。然而,与此期望相反,我们发现二聚体硼硼离子(MES(2)B(+))经历两种等同的二苯基乙炔,得到一个前所未有的硼嘌呤离子(1(+))在硼中心的取代的乙烯基。 NMR光谱和X射线衍射分析为1(+),以及电子结构计算,显示正电荷在整个缀合的系统上划分。硼鞘离子的化学转化产生不同的硼鞘管离子而没有变化的不同协调数量显着,并且应该为Group13元素的化学提供新的洞察力。

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