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Title: | Reactivity of (TMS)2N(η1-Cp*)Si═Si(η1-Cp*)N(TMS)2 toward the Halides of Groups 13–15 |
Authors: | SEN, NILANJANA PARVIN, NASRINA Tothadi, Srinu KHAN, SHABANA Dept. of Chemistry |
Keywords: | Lewis Acid/Base Reactions N-Heterocyclic Silylenes Reversible Transformation Stable Silylene Silicon Chemistry Disilene Decamethylsilicocene Activation Dendrimers 2021-AUG-WEEK1 TOC-AUG-2021 2021 |
Issue Date: | Jun-2021 |
Publisher: | American Chemical Society |
Citation: | Organometallics, 40(12), 1874–1883. |
Abstract: | In this paper, we have demonstrated the unique reactivity of a previously reported disilene [(TMS)2N(η1-Me5C5)Si═Si(η1-Me5C5)N(TMS)2] (1) with the halides of groups 13–15, which resulted in the formation of silicon–E (E = B, Al, Ge, P) bonds. Treatment of 1 with Lewis acidic BCl3 led to the formation of a cationic boron species [Cp*BSi(Cl)2N(TMS)2)][BCl3SiCl3] (2). In contrast, the reaction of 1 with BCy2Cl afforded an oxidative addition product [(TMS)2N(η1-Me5C5)Si(BCy2)(Cl)] (3) via the insertion of a Si(II) atom into the B–Cl bond. Extending the reaction with its higher congener led to classical Lewis acid-base adducts, (TMS)2N(η1-Me5C5)Si→AlCl3 (4) and (TMS)2N(η1-Me5C5)Si→AlBr3 (5), respectively. The reaction of GeCl2 with 1 proceeded in a completely different manner and resulted in a hybrid dendrimeric compound [HGe(Si(Cl)2N(TMS)2)3] (6), whereas, with SnCl2, it led to Cp*SnCl (7). Lastly, the reaction of Ph2PCl followed the same pattern like Cy2BCl and led to the formation of an oxidative addition product [(TMS)2N(η1-Me5C5)Si(PPh2)(Cl)] (9) with a Si–P bond. |
URI: | http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/6139 https://doi.org/10.1021/acs.organomet.1c00203 |
ISSN: | 0276-7333 1520-6041 |
Appears in Collections: | JOURNAL ARTICLES |
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