Bis(dicarbollide) Complexes of Transition Metals as a Platform for Molecular Switches. Study of Complexation of 8,8′-Bis(methylsulfanyl) Derivatives of Cobalt and Iron Bis(dicarbollides)

Author:

Anufriev Sergey A.,Timofeev Sergey V.,Anisimov Alexei A.,Suponitsky Kyrill Yu.,Sivaev Igor B.ORCID

Abstract

Complexation of the 8,8′-bis(methylsulfanyl) derivatives of cobalt and iron bis(dicarbollides) [8,8′-(MeS)2-3,3′-M(1,2-C2B9H10)2]− (M = Co, Fe) with copper, silver, palladium and rhodium leads to the formation of the corresponding chelate complexes, which is accompanied by a transition from the transoid to the cisoid conformation of the bis(dicarbollide) complex. This transition is reversible and can be used in design of coordination-driven molecular switches based on transition metal bis(dicarbollide) complexes. The solid-state structures of {(Ph3P)ClPd[8,8′- (MeS)2-3,3′-Co(1,2-C2B9H10)2-κ2-S,S′]} and {(COD)Rh[8,8′-(MeS)2-3,3′-Co(1,2-C2B9H10)2-κ2-S,S′]} were determined by single crystal X-ray diffraction.

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference40 articles.

1. Molecular Machines and Motors (Structure and Bonding, Volume 99);Sauvage,2001

2. Molecular Machines and Motors: Recent Advances and Perspectives (Topics in Current Chemistry, Volume 354);Credi,2014

3. Artificial Molecular Machines

4. Design of Collective Motions from Synthetic Molecular Switches, Rotors, and Motors

5. From Chemical Topology to Molecular Machines (Nobel Lecture)

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