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April 25, 2026Science8 citations

Os(η 5 -B 5 H 10 ) 2 : A carbon-free analog of ferrocene

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SMStutee MohapatraSSSuvam SahaGJGaurav Joshi

Key Points

  • The research aims to synthesize a carbon-free analog of ferrocene and explore its structural properties.
  • Preparation and crystallographic characterization of [Os(η 5 -B 5 H 10 ) 2 ]
  • Comparison of bonding strength and structural features with ferrocene
  • Isolation of the isomeric complex [Os(η 5 -B 5 H 10 )(η 3 -B 5 H 10 )]
  • The carbon-free complex exhibits much stronger metal-ring bonding due to π molecular orbital rehybridization.
  • An unusually short ring-ring separation of 3.071 angstroms was observed.
  • The isomeric complex features a coordination mode not found in ferrocene.

Abstract

The synthesis of a carbon-free analog of ferrocene has been a long-standing goal in inorganic chemistry. We report here the preparation and crystallographic characterization of the carbon-free sandwich complex Os(η 5 -B 5 H 10 ) 2 , which is qualitatively similar to ferrocene in structure and bonding. The metal-ring bonding is much stronger in Os(η 5 -B 5 H 10 ) 2 , owing to rehybridization of the π molecular orbitals brought in by the bridging B-H-B hydrogens and the bent B-H t bonds of the larger B 5 H 10 ring (where B-H t is the terminal B-H bond). This also leads to an unusually short ring-ring separation of 3.071 angstroms and a staggered conformation. The isomeric Os(η 5 -B 5 H 10 )(η 3 -B 5 H 10 ), which features a coordination mode unknown for ferrocene, has also been isolated. A similar attempt for Ru(η 5 -B 5 H 10 ) 2 resulted only in Ru(η 5 -B 5 H 10 )(η 3 -B 5 H 10 ).

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Cite This Study

Mohapatra et al. (2026) studied this question.

synapsesocial.com/papers/69ec5b3d88ba6daa22daccf2https://doi.org/10.1126/science.aed9192
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