2016
DOI: 10.1002/chem.201600637
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New Trinuclear Complexes of Group 6, 8, and 9 Metals with a Triply Bridging Borylene Ligand

Abstract: Trinuclear complexes of group 6, 8, and 9 transition metals with a (μ3 -BH) ligand [(μ3 -BH)(Cp*Rh)2 (μ-CO)M'(CO)5 ], 3 and 4 (3: M'=Mo; 4: M'=W) and 5-8, [(Cp*Ru)3 (μ3 -CO)2 (μ3 -BH)(μ3 -E)(μ-H){M'(CO)3 }] (5: M'=Cr, E=CO; 6: M'=Mo, E=CO; 7: M'=Mo, E=BH; 8: M'=W, E=CO), have been synthesized from the reaction between nido-[(Cp*M)2 B3 H7 ] (nido-1: M=Rh; nido-2: M=RuH, Cp*=η(5) -C5 Me5 ) and [M'(CO)5 ⋅thf] (M'=Mo and W). Compounds 3 and 4 are isoelectronic and isostructural with [(μ3 -BH)(Cp*Co)2 (μ-CO)M'(CO)5… Show more

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Cited by 19 publications
(19 citation statements)
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“…In this connection, we have found that the reactions of preformed nido- and arachno- metallaboranes with metal carbonyls are the most effective ways to synthesize metal-rich metallaboranes featuring boride and borylene units. Using this synthesis approach, we have isolated a series of metal-rich metallaboranes. ,, As a result, we have explored the reactivity of nido -[(RhCp*) 2 (B 3 H 7 )] and arachno -[IrCp*H 2 (B 3 H 7 )] with metal carbonyls, such as [Co 2 (CO) 8 ] and [Mn 2 (CO) 10 ], that yielded metal-rich metallaboranes with diverse geometries and bonding features. Herein, we account for the synthesis, structure, and bonding of various clusters having borylene and boride units.…”
Section: Introductionmentioning
confidence: 99%
“…In this connection, we have found that the reactions of preformed nido- and arachno- metallaboranes with metal carbonyls are the most effective ways to synthesize metal-rich metallaboranes featuring boride and borylene units. Using this synthesis approach, we have isolated a series of metal-rich metallaboranes. ,, As a result, we have explored the reactivity of nido -[(RhCp*) 2 (B 3 H 7 )] and arachno -[IrCp*H 2 (B 3 H 7 )] with metal carbonyls, such as [Co 2 (CO) 8 ] and [Mn 2 (CO) 10 ], that yielded metal-rich metallaboranes with diverse geometries and bonding features. Herein, we account for the synthesis, structure, and bonding of various clusters having borylene and boride units.…”
Section: Introductionmentioning
confidence: 99%
“…The average Ru–B lengths observed in the known μ 3 -borylene ligand on Ru 3 clusters (average 2.12 Å) is close to the sum of the covalent radii. ,, The averages of the Ru–Al and Ru–Ga lengths in congeneric [{Cp*Ru­(μ-H)} 3 (μ 3 -AlEt)] (2.481 Å) , and [{Cp*Ru­(μ-H)} 3 (μ 3 -GaMe)] (2.475 Å) also correspond to the sum of the covalent radii, respectively (RuAl 2.51 Å, RuGa 2.49 Å) …”
Section: Results and Discussionmentioning
confidence: 67%
“…The mass spectrum of 4 shows a molecular ion peak at m/z = 944.9796 ([M + K] + ), which is 18 mass units less than that of 5 ( m/z = 962.9697; [M + Na] + ). The downfield 11 B{ 1 H} chemical shifts of 4 ( δ = 116.6 and 110.3 ppm) and 5 ( δ = 111.8 and 94.7 ppm) indicate the presence of a triply bridging borylene unit , . Apart from the Cp* protons, the 1 H NMR spectra also reveal the characteristic signals of B–H t protons ( 4 : δ = 9.34 and 10.04 ppm; 5 : δ = 9.91 ppm).…”
Section: Resultsmentioning
confidence: 98%
“…Hence, chemists are often interested in isolating discrete, closed transition‐metal boride clusters in a systematic synthetic way. It is evident that cluster expansion reactions of transition‐metal carbonyl compounds with metallaboranes have often yielded interesting compounds , , , , , , , . To study the effect of metal carbonyl fragments in metallaborane clusters, we performed the thermolysis of nido ‐ 1 with [Fe 2 (CO) 9 ] at a moderate temperature, which led to the isolation of 6 together with the formation of 4 and 5 (Scheme a).…”
Section: Resultsmentioning
confidence: 99%