首页> 外文期刊>Journal of the American Chemical Society >Synthesis of an Isolable Bis(silylene)-Stabilized Silylone and Its Reactivity Toward Small Gaseous Molecules
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Synthesis of an Isolable Bis(silylene)-Stabilized Silylone and Its Reactivity Toward Small Gaseous Molecules

机译:稳定的双(甲硅烷基)稳定的甲硅烷基的合成及其对气态小分子的反应性

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The first bis(N-heterocyclic silylene)-stabilized zero-valent silicon compound, [Si-II(Xant)Si-II]Si-0 (4, Xant = 9,9-dimethyl-xanthene-4,5-diyl), has been synthesized via the reduction of the corresponding chlorosilyliumylidene chloride precursor {[Si-II(Xant)Si-II]SiCl}Cl-+(-)(2). The electronic structure of silylone 4, whose molecular structure is confirmed spectroscopically and crystallographically, is investigated by DFT calculations and Natural Bond Orbital analysis, showing two perpendicular lone-pairs of electrons on the central Si-0 atom, i.e., an sp(0,)(41)-type lone-pair and a delocalized p lone-pair. With the electron-rich and oxophilic Si-0 center, silylone 4 exhibits a striking reactivity toward small gaseous molecules. Remarkably, the oxidation of silylone 4 by N2O can be controlled to generate distinct products by regulating the amount of added N2O. Exposing 4 to an excess or two molar equivalents of N2O yields the unexpected oxidation product 5, bearing a central six-membered Si4O2 ring. When 4 is mixed with one molar equivalent of N2O, the unique compound 6 is obtained, resulting from a rare 1,4-addition of two central silicon atoms to a phenyl ring of an amidinate ligand coordinated to the Si-II atom. In addition, cleavage of the strong N-H bond in ammonia is also readily accomplished by silylone 4, representing the first example of NH3 activation in silylone chemistry. In the presence of the Lewis acid BPh3, silylone 4 achieves heterolytic dihydrogen cleavage and ethylene addition to form the corresponding hydridosilyliumylidene hydroborate salt 8 and the zwitterionic compound 9, respectively, which represent a new type of frustrated Lewis pair based on an electron-rich Si-0 donor and a borane acceptor.
机译:第一个双(N-杂环亚甲硅烷基)稳定的零价硅化合物,[Si-II(Xant)Si-II] Si-0(4,Xant = 9,9-二甲基-an吨-4,5-二基)通过还原相应的氯代亚甲硅烷基氯化物前体{[Si-II(Xant)Si-II] SiCl} Cl-+(-)(2),已经合成了R 1。通过DFT计算和自然键轨道分析研究了甲硅烷基4的电子结构,该分子的结构在光谱和晶体学上得到了确认,结果表明在中心Si-0原子上有两个垂直的电子孤对,即sp(0, )(41)型孤对和离域p孤对。具有富电子和亲氧性的Si-0中心,甲硅烷基4对小的气体分子表现出惊人的反应性。显着地,可以通过调节N 2 O的添加量来控制N 2 O对甲硅烷基4的氧化以产生不同的产物。将4暴露于过量或2摩尔当量的N2O中会产生出乎意料的氧化产物5,带有中心六元Si4O2环。当将4与一摩尔当量的N2O混合时,得到独特的化合物6,这是由于两个中心硅原子稀有1,4-加成到与Si-II原子配位的a基配体的苯环上。另外,也可以通过甲硅烷基酮4容易地完成氨中强N-H键的裂解,这是甲硅烷基酮化学中NH 3活化的第一个例子。在路易斯酸BPh3的存在下,甲硅烷基4可以实现二氢裂解和乙烯加成反应,分别形成相应的氢化硅亚烷基氢硼酸盐8和两性离子化合物9,它们代表了一种新型的基于富电子的沮丧的路易斯对。 -0供体和硼烷受体。

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