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Synthesis, Characterization, and Structural Analysis of AM[Al(NONDipp)(H)(SiH2Ph)] (AM = Li, Na, K, Rb, Cs) Compounds, Made Via Oxidative Addition of Phenylsilane to Alkali Metal Aluminyls.


ABSTRACT: We report the oxidative addition of phenylsilane to the complete series of alkali metal (AM) aluminyls [AM{Al(NONDipp)}]2 (AM = Li, Na, K, Rb, and Cs). Crystalline products (1-AM) have been isolated as ether or THF adducts, [AM(L)n][Al(NONDipp)(H)(SiH2Ph)] (AM = Li, Na, K, Rb, L = Et2O, n = 1; AM = Cs, L = THF, n = 2). Further to this series, the novel rubidium rubidiate, [{Rb(THF)4}2(Rb{Al(NONDipp)(H)(SiH2Ph)}2)]+ [Rb{Al(NONDipp)(H)(SiH2Ph)}2]-, was isolated during an attempted recrystallization of Rb[Al(NONDipp)(H)(SiH2Ph)] from a hexane/THF mixture. Structural and spectroscopic characterizations of the series 1-AM confirm the presence of μ-hydrides that bridge the aluminum and alkali metals (AM), with multiple stabilizing AM···π(arene) interactions to either the Dipp- or Ph-substituents. These products form a complete series of soluble, alkali metal (hydrido) aluminates that present a platform for further reactivity studies.

SUBMITTER: Ballmann GM 

PROVIDER: S-EPMC9749022 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Synthesis, Characterization, and Structural Analysis of <b>AM</b>[Al(NON<sup>Dipp</sup>)(H)(SiH<sub>2</sub>Ph)] (<b>AM</b> = Li, Na, K, Rb, Cs) Compounds, Made Via Oxidative Addition of Phenylsilane to Alkali Metal Aluminyls.

Ballmann Gerd M GM   Evans Matthew J MJ   Gentner Thomas X TX   Kennedy Alan R AR   Fulton J Robin JR   Coles Martyn P MP   Mulvey Robert E RE  

Inorganic chemistry 20221123 49


We report the oxidative addition of phenylsilane to the complete series of alkali metal (<b>AM</b>) aluminyls [<b>AM</b>{Al(NON<sup>Dipp</sup>)}]<sub>2</sub> (<b>AM</b> = Li, Na, K, Rb, and Cs). Crystalline products (<b>1-AM</b>) have been isolated as ether or THF adducts, [<b>AM</b>(L)<sub><i>n</i></sub>][Al(NON<sup>Dipp</sup>)(H)(SiH<sub>2</sub>Ph)] (<b>AM</b> = Li, Na, K, Rb, L = Et<sub>2</sub>O, <i>n</i> = 1; <b>AM</b> = Cs, L = THF, <i>n</i> = 2). Further to this series, the novel rubidium  ...[more]

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