Structural and Magnetic Properties of a {GdCu5}2 Metallacrown Dimer with a Disulfonate Linker

Author:

Pavlishchuk Anna V.12ORCID,Zeller Matthias2,Carrella Luca M.3,Rentschler Eva3,Bindra Jasleen K.45,Dalal Naresh45,Kinyon Jared6,Perera Kuluni2,Pavlishchuk Vitaly V.1,Addison Anthony W.7

Affiliation:

1. L.V. Pisarzhevskii Institute of Physical Chemistry of the National Academy of Sciences of the Ukraine Prospect Nauki 31 Kyiv 03028 Ukraine

2. Department of Chemistry Purdue University 560 Oval Drive West Lafayette IA 47907–2084 U.S.A.

3. Department of Chemistry Johannes Gutenberg University of Mainz Duesbergweg 10–14 D-55128 Mainz Germany

4. Department of Chemistry and Biochemistry Florida State University Tallahassee Florida 32306 U.S.A E-amil

5. National High Magnetic Field Laboratory Florida State University Tallahassee Florida 32310 United States

6. Kalinga School of Applied Sciences KIIT University Bhubaneswar Odisha India

7. Department of Chemistry Drexel University Philadelphia PA 19104–2816

Abstract

AbstractThe complex {Na2(H2O)8[GdCu5(GlyHA)5(H2O)4L]2}L2 ⋅ 2.5DMF ⋅ 10.5H2O (1, where GlyHA2−= glycinehydroxamate, L2−= 4,4′‐bis(2‐sulfonatostyryl)biphenyl) was obtained as the outcome of the metathesis reaction of previously reported [GdCu5(GlyHA)5(CO3)(NO3)(H2O)5] ⋅ 3.5H2O with an excess of the disulfonate‘s sodium salt. X‐Ray analysis of 1 shows a dimeric structure in which 15‐metallacrown‐5 units {GdCu5}3+ are arranged in an “edge‐to‐edge” manner by way of two linking disulfonates, L2−. Magnetic studies of polycrystalline 1 over a temperature range of 2–300 K revealed both Gd‐Cu ferromagnetic and Cu‐Cu antiferromagnetic interactions within the metallacrown unit. Experimental χMT vs. T data for 1 were fitted using different theoretical models. A two‐J model, which takes into account both exchange interactions between adjacent copper(II) ions and the Gd‐Cu exchange interactions allows fitting of the χMT vs. T data in the whole temperature range. The values obtained for the exchange parameters are in accord with previously reported parameters for Ln(III)‐Cu(II) 15‐metallacrowns‐5. The 240 GHz powder EPR spectra for 1 were recorded between 30 and 150 K.

Publisher

Wiley

Subject

Inorganic Chemistry

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