Comprehensive Organometallic Chemistry II 1995
DOI: 10.1016/b978-008046519-7.00009-5
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Transition Metal Metallacarbaboranes

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Cited by 68 publications
(27 citation statements)
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“…This promises the possibility of synthesizing complexes with simultaneous coordination of the carborane and amidine components. For our study we chose amidine 10-PrNHC(Et)=HN-7,8-C 2 B 9 H 11 (1) prepared by the nucleophilic addition of propyl amine to 10-EtC≡N-7,8-C 2 B 9 H 11 . For the complexation reactions, we used nickel(II) phosphine complexes [(R 2 R'P) 2 NiCl 2 ] with ligands having different steric parameters (Tolman cone angles, θ)-R 2 R'P = Me 2 PhP (θ = 122 • ), PBu 3 (θ = 132 • ), PPh 3 (θ = 145 • ) [23].…”
Section: Resultsmentioning
confidence: 99%
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“…This promises the possibility of synthesizing complexes with simultaneous coordination of the carborane and amidine components. For our study we chose amidine 10-PrNHC(Et)=HN-7,8-C 2 B 9 H 11 (1) prepared by the nucleophilic addition of propyl amine to 10-EtC≡N-7,8-C 2 B 9 H 11 . For the complexation reactions, we used nickel(II) phosphine complexes [(R 2 R'P) 2 NiCl 2 ] with ligands having different steric parameters (Tolman cone angles, θ)-R 2 R'P = Me 2 PhP (θ = 122 • ), PBu 3 (θ = 132 • ), PPh 3 (θ = 145 • ) [23].…”
Section: Resultsmentioning
confidence: 99%
“…The amidine 10-PrNHC(Et)=HN-7,8-C 2 B 9 H 11 (1) was prepared according to procedure from the literature [20]. Dichlorobis(triphenylphosphine)nickel(II), dichlorobis (dimethylphenylphosphine)nickel(II) and dichlorobis(tributylphosphine)nickel(II) were synthesized according to the previously described methods [28].…”
Section: Reagents and Methodsmentioning
confidence: 99%
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“…Reaction of 21 with two equivalents of 4-methylphenylacetylene or 1-hexyne gives selectively ruthenium aminocarbene complexes [η 5 :σ-Me 2 C(C 5 H 4 )(C 2 B 10 H 10 )]-Ru[= C(NH n Pr)CHR-η 2 -CH = CHR] (22). On the other hand, interaction of 21 with two equivalents of 4-Xphenylacetylene (X = Cl, Br) produces exclusively ruthenium diene complexes [η 5 :σ-Me 2 C(C 5 H 4 )(C 2 B 10 -H 10 )]Ru[η 4 -CHAr = C(NH n Pr)CH = CHAr] (23) (Scheme 8) [51] .…”
Section: Cyclooctadiene) or [Ru](pph 3 ) 2 With Alkynesmentioning
confidence: 99%