Literature DB >> 24749985

Bistable multifunctionality and switchable strong ferromagnetic-to-antiferromagnetic coupling in a one-dimensional rhodium(I)-semiquinonato complex.

Minoru Mitsumi1, Takashi Nishitani, Shota Yamasaki, Nayuta Shimada, Yuuki Komatsu, Koshiro Toriumi, Yasutaka Kitagawa, Mitsutaka Okumura, Yuji Miyazaki, Natalia Górska, Akira Inaba, Akinori Kanda, Noriaki Hanasaki.   

Abstract

We present a comprehensive study of the synthesis, heat capacity, crystal structures, UV-vis-NIR and mid-IR spectra, DFT calculations, and magnetic and electrical properties of a one-dimensional (1D) rhodium(I)-semiquinonato complex, [Rh(3,6-DBSQ-4,5-(MeO)2)(CO)2]∞ (3), where 3,6-DBSQ-4,5-(MeO)2(•-) represents 3,6-di-tert-butyl-4,5-dimethoxy-1,2-benzosemiquinonato radical anion. The compound 3 comprises neutral 1D chains of complex molecules stacked in a staggered arrangement with short Rh-Rh distances of 3.0796(4) and 3.1045(4) Å at 226 K and exhibits unprecedented bistable multifunctionality with respect to its magnetic and conductive properties in the temperature range of 228-207 K. The observed bistability results from the thermal hysteresis across a first-order phase transition, and the transition accompanies the exchange of the interchain C-H···O hydrogen-bond partners between the semiquinonato ligands. The strong overlaps of the complex molecules lead to unusually strong ferromagnetic interactions in the low-temperature (LT) phase. Furthermore, the magnetic interactions in the 1D chain drastically change from strongly ferromagnetic in the LT phase to antiferromagnetic in the room-temperature (RT) phase with hysteresis. In addition, the compound 3 exhibits long-range antiferromagnetic ordering between the ferromagnetic chains and spontaneous magnetization because of spin canting (canted antiferromagnetism) at a transition temperature T(N) of 14.2 K. The electrical conductivity of 3 at 300 K is 4.8 × 10(-4) S cm(-1), which is relatively high despite Rh not being in a mixed-valence state. The temperature dependence of electrical resistivity also exhibits a clear hysteresis across the first-order phase transition. Furthermore, the ferromagnetic LT phase can be easily stabilized up to RT by the application of a relatively weak applied pressure of 1.4 kbar, which reflects the bistable characteristics and demonstrates the simultaneous control of multifunctionality through external perturbation.

Entities:  

Year:  2014        PMID: 24749985     DOI: 10.1021/ja5017014

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  2 in total

1.  Modulation of Band Gaps toward Varying Conductivities in Heterometallic One-Dimensional Chains by Ligand Alteration and Third Metal Insertion.

Authors:  Kazuhiro Uemura; Daiki Ito; Jenny Pirillo; Yuh Hijikata; Akinori Saeki
Journal:  ACS Omega       Date:  2020-11-13

2.  Chameleonic layered metal-organic frameworks with variable charge-ordered states triggered by temperature and guest molecules.

Authors:  Jian Chen; Yoshihiro Sekine; Atsushi Okazawa; Hiroyasu Sato; Wataru Kosaka; Hitoshi Miyasaka
Journal:  Chem Sci       Date:  2020-03-05       Impact factor: 9.825

  2 in total

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