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Synthesis, Structure, Bonding, and Reactivity of Metal Complexes Comprising Diborane(4) and Diborene(2): [{Cp*Mo(CO)<sub>2</sub>}<sub>2</sub>{μ‐η<sup>2</sup>:η<sup>2</sup>‐B<sub>2</sub>H<sub>4</sub>}] and [{Cp*M(CO)<sub>2</sub>}<sub>2</sub>B<sub>2</sub>H<sub>2</sub>M(CO)<sub>4</sub>], M=Mo,W

Bijan MondalDepartment of Chemistry Indian Institute of Technology Madras Chennai 600 036 IndiaRanjit BagDepartment of Chemistry Indian Institute of Technology Madras Chennai 600 036 IndiaSagar GhoraiInorganic and Physical Chemistry Department Indian Institute of Science Bangalore 560012 IndiaK. BakthavachalamDepartment of Chemistry Indian Institute of Technology Madras Chennai 600 036 IndiaEluvathingal D. JemmisInorganic and Physical Chemistry Department Indian Institute of Science Bangalore 560012 IndiaSundargopal GhoshDepartment of Chemistry Indian Institute of Technology Madras Chennai 600 036 India
2018en
ABI

Аннотация

Abstract The reaction of [(Cp*Mo) 2 (μ‐Cl) 2 B 2 H 6 ] ( 1 ) with CO at room temperature led to the formation of the highly fluxional species [{Cp*Mo(CO) 2 } 2 {μ‐η 2 :η 2 ‐B 2 H 4 }] ( 2 ). Compound 2, to the best of our knowledge, is the first example of a bimetallic diborane(4) conforming to a singly bridged C s structure. Theoretical studies show that 2 mimics the Cotton dimolybdenum–alkyne complex [{CpMo(CO) 2 } 2 C 2 H 2 ]. In an attempt to replace two hydrogen atoms of diborane(4) in 2 with a 2e [W(CO) 4 ] fragment, [{Cp*Mo(CO) 2 } 2 B 2 H 2 W(CO) 4 ] ( 3 ) was isolated upon treatment with [W(CO) 5 ⋅thf]. Compound 3 shows the intriguing presence of [B 2 H 2 ] with a short B−B length of 1.624(4) Å. We isolated the tungsten analogues of 3 , [{Cp*W(CO) 2 } 2 B 2 H 2 W(CO) 4 ] ( 4 ) and [{Cp*W(CO) 2 } 2 B 2 H 2 Mo(CO) 4 ] ( 5 ), which provided direct proof of the existence of the tungsten analogue of 2 .

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