Literature DB >> 12691556

Magnetic studies on hexaiodorhenate(IV) salts of univalent cations. Spin canting and magnetic ordering in K2[ReI6] with Tc = 24 K.

Ricardo González1, Raúl Chiozzone, Carlos Kremer, Giovanni De Munno, Francesco Nicolò, Francesc Lloret, Miguel Julve, Juan Faus.   

Abstract

The ionic salts of rhenium(IV) of formula (Cat)(2)[ReI(6)] with Cat = Li(+) (1), Na(+) (2), K(+) (3), Rb(+) (4), Cs(+) (5), NH(4)(+) (6), and AsPh(4)(+) (7) [AsPh(4)(+) = tetraphenylarsonium cation] have been synthesized, and the structures of two of them (namely, 3 and 6) were determined by single-crystal X-ray diffraction. 3 crystallizes in the monoclinic system, space group Pn, with a = 7.815(1) A, b = 7.874(1) A, c = 11.335(1) A, beta = 90.38(1) degrees, and Z = 2 whereas 6 crystallizes in the tetragonal system, space group P4/mnc, with a = 7.881(1) A, b = 7.881(1) A, c = 11.474(2) A, and Z = 2. The structures of 3 and 6 are made up of discrete [ReI(6)](2)(-) anions and K(+) (3) or NH(4)(+) (6) cations held together by electrostatic forces (3 and 6) and N-H.I hydrogen bonds (6). The rhenium(IV) cation in 3 and 6 is surrounded by six iodide ligands in an octahedral environment with the Re-I bond lengths varying in a very narrow range [2.704(3)-2.738(3) and 2.716(1)-2.722(2) A for 3 and 6, respectively]. The [ReI(6)](2)(-) anions in 6 describe a tetragonally distorted body-centered cubic structure. In 3, the arrangement of these units is similar but more distorted. The different arrangement of the anions in 3 and 6 accounts for the centrosymmetric (6) and non-centrosymmetric (3) structures observed. The magnetic properties of 1-7 were investigated in the temperature range 2.0-300 K. The magnetic behavior of 7 is that of a magnetically diluted Re(IV) complex with a large value of the zero-field splitting of the ground level (|2D| = 49.8 cm(-)(1)) whereas those of 1, 2, and 4-6 are typical of antiferromagnetically coupled systems with susceptibility maxima at 28 (1), 27 (2), 21 (4), 16 (5), and 20 K (6). In the case of compound 3, its magnetic behavior in the high-temperature range is parallel to that observed in the parent salts but below 24 K it is a weak ferromagnet with a canting angle of ca. 1.2 degrees.

Entities:  

Year:  2003        PMID: 12691556     DOI: 10.1021/ic020531j

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  3 in total

1.  Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers.

Authors:  Christopher H Woodall; Gavin A Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R Probert; Simon Parsons; Stephen Moggach; José Martínez-Lillo; Mark Murrie; Konstantin V Kamenev; Euan K Brechin
Journal:  Nat Commun       Date:  2016-12-21       Impact factor: 14.919

2.  Coexistence of metamagnetism and slow relaxation of magnetization in ammonium hexafluoridorhenate.

Authors:  James Louis-Jean; Samundeeswari M Balasekaran; Keith V Lawler; Adrián Sanchis-Perucho; José Martínez-Lillo; Dean Smith; Paul M Forster; Ashkan Salamat; Frederic Poineau
Journal:  RSC Adv       Date:  2021-02-03       Impact factor: 3.361

3.  Spin-Crossover and Slow Magnetic Relaxation Behavior in Hexachlororhenate(IV) Salts of Mn(III) Complexes [Mn(5-Hal-sal2323)]2[ReCl6] (Hal = Cl, Br).

Authors:  Aleksandra V Tiunova; Anna V Kazakova; Denis V Korchagin; Gennady V Shilov; Sergey M Aldoshin; Aleksei I Dmitriev; Mikhail V Zhidkov; Konstantin V Zakharov; Eduard B Yagubskii
Journal:  Int J Mol Sci       Date:  2022-09-28       Impact factor: 6.208

  3 in total

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