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Tricoordinate silyl cations (silylium ions)

机译:三角鳞状阳离子(Silylium离子)

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摘要

Being silicon analogues of carbenium ions, which are ubiquitous in organic chemistry, silylium ions play a pivotal role in organosilicon chemistry. However, unlike widespread carbenium ions, silylium ions are much less accessible and much more difficult to stabilize due to the lower electronegativity of the silicon atom, its greater polarizability and notably larger size (compared to those of carbon atom), which results in extraordinarily high electrophilicity and Lewis acidity of silylium ions. These peculiar characteristics of silylium ions require very special, sophisticated synthetic approaches for their generation, isolation and structural elucidation, on the one hand, and open the door for their use as exceptionally potent Lewis acids in a number of catalytic transformations, on the other hand. In this review, we present and discuss the latest advances in the field of stable silylium ion derivatives, particularly emphasizing the state-of-the-art procedures for their synthesis, structural studies both in solution and in the solid state, most remarkable recent representatives of the isolable silylium ions, and finally, discuss the use of silylium ions in synthetic organic chemistry.
机译:作为碳离子的硅类似物,在有机化学中普遍存在,Silylium离子在有机硅化学中起着枢轴作用。然而,与广泛的碳离子不同,甲硅烷钠离子可均可较小,并且由于硅原子的较低的电负性,其较高的极化性和显着的尺寸(与碳原子相比)而言,难以稳定,这导致非常高的甲硅烷钠离子的亲电和路易斯酸度。甲硅烷粒子离子的这些特殊特征需要一方面的发电,隔离和结构阐明非常特殊,精致的合成方法,并在几个催化转化中敞开门,以便在一些催化转化中用作异常有效的路易斯酸。 。在这篇综述中,我们展示并讨论了稳定的甲硅烷鎓离子衍生物领域的最新进展,特别是强调最先进的程序,在解决方案和固态,最近的最卓越的州,最重要的代表可分离的甲硅烷钠离子,最后,探讨了甲硅烷钠离子在合成有机化学中的用途。

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