A heterobimetallic (ReAgI)-Ag-IV sheetlike polymer of formula [Ag2ReCl6](n) (1) has been prepared by reaction between acidified aqueous solutions of [ReCl6](2-) and Ag+ ions. Its structure has been determined by single-crystal X-ray diffraction and its magnetic behavior has been investigated in the temperature range 1.9-250 K. The hexachlororhenate(IV) unit is present in 1 and adopts the hexakis-monodentate coordination mode toward the silver(I) cations, which are three-coordinated, leading to a corrugated two-dimensional structure. Each layer is made up of octahedrons that share all of their edges, with the repeating unit being the single mu-chloro-bridged Re-Ag pair. The magnetic behavior of 1 corresponds to that of a three-dimensional antiferromagnet with a susceptibility maximum at 26 K. Short intra- and interlayer Re-Cl...Cl-Re contacts account for this antiferromagnetic ordering.

A two-dimensional ReIVAgI compound: X-ray structure and magnetic properties

ARMENTANO, Donatella;G. DE MUNNO;
2006-01-01

Abstract

A heterobimetallic (ReAgI)-Ag-IV sheetlike polymer of formula [Ag2ReCl6](n) (1) has been prepared by reaction between acidified aqueous solutions of [ReCl6](2-) and Ag+ ions. Its structure has been determined by single-crystal X-ray diffraction and its magnetic behavior has been investigated in the temperature range 1.9-250 K. The hexachlororhenate(IV) unit is present in 1 and adopts the hexakis-monodentate coordination mode toward the silver(I) cations, which are three-coordinated, leading to a corrugated two-dimensional structure. Each layer is made up of octahedrons that share all of their edges, with the repeating unit being the single mu-chloro-bridged Re-Ag pair. The magnetic behavior of 1 corresponds to that of a three-dimensional antiferromagnet with a susceptibility maximum at 26 K. Short intra- and interlayer Re-Cl...Cl-Re contacts account for this antiferromagnetic ordering.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11770/156009
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