Publications by authors named "Erwann le Coz"

Barium complexes ligated by bulky boryloxides [OBR ] (where R=CH(SiMe ) , 2,4,6- Pr -C H or 2,4,6-(CF ) -C H ), siloxide [OSi(SiMe ) ] , and/or phenoxide [O-2,6-Ph -C H ] , have been prepared. A diversity of coordination patterns is observed in the solid state for both homoleptic and heteroleptic complexes, with coordination numbers ranging between 2 and 4. The identity of the bridging ligand in heteroleptic dimers [Ba(μ -X )(X )] depends largely on the given pair of ligands X and X .

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Invited for the cover of this issue are the groups of Yann Sarazin at the University of Rennes and Laura Falivene at the King Abdullah University of Science and Technology. The image depicts two barium figures working in tandem to mimic the dinuclear nature of the active species in the catalytic cycle described in the manuscript. Read the full text of the article at 10.

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Two very rare cases of barium boryloxides, the homoleptic [Ba(OB{CH(SiMe ) } ) ⋅C H ] and the heteroleptic [{LO }BaOB{CH(SiMe ) } ] stabilised by the multidentate aminoetherphenolate {LO } , are presented, and their structural properties are discussed. The electron-deficient [Ba(OB{CH(SiMe ) } ) ⋅C H ] shows, in particular, resilient η -coordination of the toluene molecule. Together with its amido parents [Ba{N(SiMe ) } ⋅thf ] and [Ba{N(SiMe ) } ] , this complex catalyses the fast and chemoselective dehydrocoupling of borinic acids R BOH and hydrosilanes HSiR' , yielding borasiloxanes R BOSiR' in a controlled fashion.

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Although Pb -siloxides have been known until now to decompose to oxoclusters, here [{RO }PbOSi(SiMe ) ] (RO =fluoroalkoxide) and, most importantly, [Pb {OSi(SiMe ) }{μ -OSi(SiMe ) } ], are presented. The unusual bonding pattern in the latter thermally stable dinuclear complex was investigated by crystallographic and computational methods. Its stability is much higher than that of the simple, yet elusive "[Pb(OSiPh ) ]", for which decomposition pathways towards [Pb (μ -O)(μ -OSiPh ) ] have been clearly established.

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The first unsupported barium siloxide, the homoleptic dimer [Ba {μ -OSi(SiMe ) } {OSi(SiMe ) }], is presented, and its structural features are discussed in the light of DFT computations. This complex, together with the related [Ba{μ -OSi(SiMe ) }{N(SiMe ) }] and their parent [Ba{N(SiMe ) } ] , mediates the formation of asymmetric siloxanes R Si-O-SiR' through the first case of main group metal-mediated dehydrocoupling of silanols and hydrosilanes. Early kinetic analysis highlights an unusual catalytic manifold.

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The detailed multistep syntheses of two nitrogen-based sterically congested iminoanilidine and amidine proligands bearing a tethered 15-member aza-ether-crown macrocycle, namely {I^Acrown}H and {Amcrown}H, are reported. These proligands react with [Ba{N(SiMe2H)2}2·(thf)n] to generate the heteroleptic barium complexes [{I^Acrown}BaN(SiMe2H)2] (5) and [{Amcrown}BaN(SiMe2H)2] (6) in high yields. These complexes exhibit high coordination numbers (resp.

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The structures of the heterobimetallic Ca/Li and Ba/Li amides [CaLi2{μ2-N(SiMe2H)2}4]∞ and [Ba2Li2{μ2-N(SiMe2H)2}6]∞, stabilised by metalH-Si interactions, and that of a diphenylmethanide calcium salt, [Li(tmeda)2+·Ca(CHPh2)3(thf)-], are presented. These well-defined, storable compounds are inert towards Et2O and thf.

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The first soluble barium boryloxides [Ba]- OB{CH(SiMe ) } are presented. These mono- or dinuclear complexes feature low coordination numbers, as low as two for [Ba(OB{CH(SiMe ) } ) ], which is further stabilized by intra- and intermolecular Ba⋅⋅⋅H C agostic interactions. Barium boryloxides and the parent [Ba{N(SiMe ) } ⋅(thf) ] catalyze the dehydrocoupling of borinic acids with hydrosilanes, providing borasiloxanes under mild conditions.

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The first examples of lead(ii) boroxides, [Pb(OB{CH(SiMe3)2}2)2] (1) and [{N^C}PbOB{CH(SiMe3)2}2] (5; N^C = 2-Me2NCH2C6H4), were prepared via simple protocols. These structurally characterised compounds are stable and, unlike lead(ii) alkoxides and siloxides, do not trigger uncontrolled formation of lead(ii) oxoclusters.

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The reactivity of functionalized ynamides and arylynamines with tetracyanoethylene at room temperature was evaluated. In most cases, the corresponding 1,1,4,4-tetracyanobutadienes (TCBDs) were obtained in good to excellent yields through a [2+2]-cycloaddition/[2+2]-retro-electrocyclization sequence. The influence of diverse functional groups on the yield of the reaction was investigated, in particular concerning multiple ynamides.

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