Electrochemical Synthesis and Crystal Structure of the Organic Ion Intercalated Superconductor (TMA)(0.5)Fe2Se2 with T-c=43 K

Intercalation of organic cations in superconducting iron selenide can significantly increase the critical temperature (T-c). We present an electrochemical method using beta-FeSe crystals (T-c approximate to 8 K) floating on a mercury cathode to intercalate tetramethylammonium ions (TMA(+)) quantitat...

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Veröffentlicht in:Journal of the American Chemical Society 2021-03, Vol.143 (8), p.3043-3048
Hauptverfasser: Rendenbach, Bettina, Hohl, Timotheus, Harm, Sascha, Hoch, Constantin, Johrendt, Dirk
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Sprache:eng
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Zusammenfassung:Intercalation of organic cations in superconducting iron selenide can significantly increase the critical temperature (T-c). We present an electrochemical method using beta-FeSe crystals (T-c approximate to 8 K) floating on a mercury cathode to intercalate tetramethylammonium ions (TMA(+)) quantitatively to obtain bulk samples of (TMA)(0.5)Fe2Se2 with T-c = 43 K. The layered crystal structure is closely related to the ThCr2Si2-type with disordered TMA(+) ions between the FeSe layers. Although the organic ions are not detectable by X-ray diffraction, packing requirements as well as first-principle density functional theory calculations constrain the specified structure. Our synthetic route enables electrochemical intercalations of other organic cations with high yields to greatly optimize the superconducting properties and to expand this class of high-T-c materials.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.0c13396