Annulated 1,4-Disilabenzene-1,4-diide and Dihydrogen Splitting

IF 15.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Falk Ebeler, Yury V. Vishnevskiy, Beate Neumann, Hans-Georg Stammler, Dariusz W. Szczepanik and Rajendra S. Ghadwal*, 
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Abstract

The isolation of silicon analogues of phenyl anions such as (C6H5) and (C6H4)2– is challenging owing to their extremely high reactivity associated with their silylene character and weak C–Si π-interaction. Herein, we report the first annulated 1,4-disilabenzene-1,4-diide compound [(ADC)Si]2 (5) based on anionic dicarbene (ADC) scaffolds (ADC = PhC{N(Dipp)C}2; Dipp = 2,6-iPr2C6H3) as a green-yellow crystalline solid. Compound 5 is prepared by KC8 reduction of the Si(IV) chloride [(ADC)SiCl3]2 (3) or the cyclic bis-chlorosilylene [(ADC)SiCl]2 (4), which are also prepared for the first time. 5 is a neutral molecule, and each of the two-coordinated Si(I) atoms has a lone pair and an unpaired electron. Experimental and theoretical data indicate delocalization of the silicon unpaired electrons, resulting in a 6π-electron C4Si2 ring in 5. The diradical character (y) for 5 amounts to 15%. At room temperature, 5 readily reacts with dihydrogen (H2) to form the elusive bis-hydridosilylenes [(ADC)SiH]2 (Z)-6 and (E)-6. The [4 + 2]-cycloaddition of 5 and PhC≡CPh in yielding the barrelene-type bis-silylene [(ADC)SiCPh]2 (7) emphasizes the diradical reactivity of 5. With elemental sulfur, 5 results in the S2- and S3-bridged silathione derivatives [(ADC)Si(S)]2(μ-S2) (8a) and [(ADC)Si(S)]2(μ-S3) (8b). Moreover, the treatment of 5 with Fe2(CO)9 affords the Fe(0) complex [(ADC)Si(Fe(CO)4)]2(μ-CO) (9), in which each silicon atom serves as a two-electron σ-donor ligand and shares one electron with the bridging CO unit to form two Si–C bonds. The molecular structures of all compounds have been established by X-ray diffraction, and representative compounds have been analyzed by quantum chemical calculations.

Abstract Image

Annulated 1,4-Disilabenzene-1,4-diide 和二氢分裂
(C6H5)- 和 (C6H4)2- 等苯基阴离子的硅类似物的分离具有挑战性,因为它们与硅烯特性和弱 C-Si π-相互作用相关的反应活性极高。在此,我们报告了首个基于阴离子二碳化二苯(ADC)支架(ADC = PhC{N(Dipp)C}2; Dipp = 2,6-iPr2C6H3)的环状 1,4-二硅二苯-1,4-二化物化合物 [(ADC)Si]2 (5),该化合物为黄绿色结晶固体。化合物 5 是通过 KC8 还原氯化硅(IV)[(ADC)SiCl3]2 (3) 或环状双氯硅烯 [(ADC)SiCl]2(4)制备的,这两种物质也是首次制备。5 是一个中性分子,两个配位的 Si(I)原子各有一个孤对电子和一个未成对电子。实验和理论数据表明,硅的非配对电子发生了脱ocalization,从而在 5 中形成了一个 6π 电子的 C4Si2 环。5 的二叉性(y)达到 15%。在室温下,5 很容易与二氢(H2)发生反应,生成难以捉摸的双氢二硅烷基[(ADC)SiH]2 (Z)-6 和 (E)-6。5 和 PhC≡CPh 发生[4 + 2]-环加成反应,生成了桶烯型双硅烷烃[(ADC)SiCPh]2 (7),这强调了 5 的双向反应性。在元素硫的作用下,5 生成了 S2-和 S3-桥接的硅硫烷衍生物[(ADC)Si(S)]2(μ-S2) (8a) 和[(ADC)Si(S)]2(μ-S3) (8b)。此外,用 Fe2(CO)9 处理 5 会得到 Fe(0) 复合物 [(ADC)Si(Fe(CO)4)]2(μ-CO)(9),其中每个硅原子都是双电子 σ 供体配体,并与桥接的 CO 单元共享一个电子,形成两个 Si-C 键。所有化合物的分子结构都已通过 X 射线衍射确定,代表性化合物也已通过量子化学计算进行了分析。
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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