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Coordination Polymers Based on Diiron Tetrakis(dithiolato) Bridged by Alkali Metals, Electrical Bistability around Room Temperature, and Strong Antiferromagnetic Coupling

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Figshare2016-02-14 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Coordination_Polymers_Based_on_Diiron_Tetrakis_dithiolato_Bridged_by_Alkali_Metals_Electrical_Bistability_around_Room_Temperature_and_Strong_Antiferromagnetic_Coupling/2191624
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Coordination polymer chains have been formed by the direct reaction between HSC6H2Cl2SH and FeCl3·6H2O in the presence of an aqueous solution of the corresponding alkali-metal hydroxide (M = Li, Na, and K) or carbonate (M = Rb and Cs). The structures consist of dimeric [Fe2(SC6H2Cl2S)4]2– entities bridged by [M2(THF)4] [M = K (1), Rb (2), and Cs (3); THF = tetrahydrofuran] or {[Na2(μ-H2O)2(THF)2] (5 and 5′) units. The smaller size of the lithium atom yields an anion/cation ion-pair molecule, [Li­(THF)4]2[Fe2(SC6H2Cl2S)4] (4), in which the dianionic moieties are held together by Cl···Cl interactions. Electrical characterization of these compounds shows a general semiconductor behavior in which the conductivity and activation energies are mainly determined by the M–Cl and M–S bond distances. Compounds 1 and 5′ are interesting examples of bistability showing reversible transitions centered at ca. 350 and 290 K with very large hysteresis of ca. 60 and 35 K, respectively. All of these compounds exhibit intradimer strong antiferromagnetic Fe···Fe interactions.
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2016-02-14
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