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In our effort to establish a direct synthetic approach for bis(dihydridoborate) complexes of first-row transition metals, we have investigated the reactivity of [Cp*Fe(dppe)Cl] (dppe =1,2-bis(diphenylphosphino)ethane) with Na[BHL] (L =2-mercaptopyridine (mp) and 2-mercaptobenzothiazole (mbz)) that led to the formation of iron(II) dihydridoborate complexes, [Cp*Fe{κ-S,H,H-(HBH(L))}] 1 a-b (L=mp (1 a) and L=mbz (1 b)). Further, in an attempt to isolate the bis(dihydridoborate) complex of iron by the insertion of borane into the κ-N,S-chelated iron complex, [(dppe)Fe{κ-N,S-(mp)}] (2), we have isolated and structurally characterized a rare example of dimeric iron bis(dihydridoborate) complex, [Fe{κ-S,H,H-(HBH(mp))}], ΛΔ/ΔΛ-3 as pair of enantiomers. Interestingly, these enantiomers ΛΔ/ΔΛ-3 have two trans-[Fe{κ-S,H,H-(HBH(mp))}] moieties bridged through sulfur atoms of 2-mercaptopyridinyl ligands, where the iron centres are hepta-coordinated. The natural bond-orbital (NBO) analyses of ΛΔ-3 and ΔΛ-3 show considerable electron donation from the filled σ bonding orbital to vacant orbital of iron with a substantial contribution from the hydrogen atoms. The localized orbital bonding analysis (LOBA) method suggests that all the iron centres are in +2 oxidation state.
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http://dx.doi.org/10.1002/chem.202404469 | DOI Listing |
Chemistry
February 2025
Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600036, India.
In our effort to establish a direct synthetic approach for bis(dihydridoborate) complexes of first-row transition metals, we have investigated the reactivity of [Cp*Fe(dppe)Cl] (dppe =1,2-bis(diphenylphosphino)ethane) with Na[BHL] (L =2-mercaptopyridine (mp) and 2-mercaptobenzothiazole (mbz)) that led to the formation of iron(II) dihydridoborate complexes, [Cp*Fe{κ-S,H,H-(HBH(L))}] 1 a-b (L=mp (1 a) and L=mbz (1 b)). Further, in an attempt to isolate the bis(dihydridoborate) complex of iron by the insertion of borane into the κ-N,S-chelated iron complex, [(dppe)Fe{κ-N,S-(mp)}] (2), we have isolated and structurally characterized a rare example of dimeric iron bis(dihydridoborate) complex, [Fe{κ-S,H,H-(HBH(mp))}], ΛΔ/ΔΛ-3 as pair of enantiomers. Interestingly, these enantiomers ΛΔ/ΔΛ-3 have two trans-[Fe{κ-S,H,H-(HBH(mp))}] moieties bridged through sulfur atoms of 2-mercaptopyridinyl ligands, where the iron centres are hepta-coordinated.
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March 2022
Department of Chemistry, Indian Institute of Technology, Madras, Chennai, 600036, India.
Treatment of [Cp*RuCl ] , 1, [(COD)IrCl] , 2 or [(p-cymene)RuCl ] 3 (Cp*=η -C Me COD= 1,5-cyclooctadiene and p-cymene=η - PrC H Me) with heterocyclic borate ligands [Na[(H B)L], L and L (L : L=amt, L : L=mp; amt=2-amino-5-mercapto-1,3,4-thiadiazole, mp=2-mercaptopyridine) led to the formation of borate complexes having uncommon coordination. For example, complexes 1 and 2 on reaction with L and L afforded dihydridoborate species [L M(μ-H) BHL] 4-6 (4: L =Cp*, M=Ru, L=amt; 5: L =Cp*, M=Ru, L=mp; 6: L =COD, M=Ir, L=mp). On the other hand, treatment of 3 with L yielded cis- and trans-bis(dihydridoborate) species, [Ru{(μ-H) BH(mp)} ], cis-7 and trans-7.
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