Literature DB >> 22716049

Room-temperature synthesis, hydrothermal recrystallization, and properties of metastable stoichiometric FeSe.

F Nitsche1, T Goltz, H-H Klauss, A Isaeva, U Müller, W Schnelle, P Simon, Th Doert, M Ruck.   

Abstract

Room-temperature precipitation from aqueous solutions yields the hitherto unknown metastable stoichiometric iron selenide (ms-FeSe) with tetragonal anti-PbO type structure. Samples with improved crystallinity are obtained by diffusion-controlled precipitation or hydrothermal recrystallization. The relations of ms-FeSe to superconducting β-FeSe(1-x) and other neighbor phases of the iron-selenium system are established by high-temperature X-ray diffraction, DSC/TG/MS (differential scanning calorimetry/thermogravimetry/mass spectroscopy), (57)Fe Mössbauer spectroscopy, magnetization measurements, and transmission electron microscopy. Above 300 °C, ms-FeSe decomposes irreversibly to β-FeSe(1-x) and Fe(7)Se(8). The structural parameters of ms-FeSe (P4/nmm, a = 377.90(1) pm, c = 551.11(3) pm, Z = 2), obtained by Rietveld refinement, differ significantly from literature data for β-FeSe(1-x). The Mössbauer spectrum rules out interstitial iron atoms or additional phases. Magnetization data suggest canted antiferromagnetism below T(N) = 50 K. Stoichiometric non-superconducting ms-FeSe can be regarded as the true "parent" compound for the "11" iron-chalcogenide superconductors and may serve as starting point for new chemical modifications.

Entities:  

Year:  2012        PMID: 22716049     DOI: 10.1021/ic300798p

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


  2 in total

1.  Chemical excision of tetrahedral FeSe(2) chains from the superconductor FeSe: synthesis, crystal structure, and magnetism of Fe(3)Se(4)(en)(2).

Authors:  Chongin Pak; Saeed Kamali; Joyce Pham; Kathleen Lee; Joshua T Greenfield; Kirill Kovnir
Journal:  J Am Chem Soc       Date:  2013-12-13       Impact factor: 15.419

2.  Structure, microstructure and magnetic investigation of the hexagonal δ-FeSe nanophase produced by mechanochemical synthesis.

Authors:  K F Ulbrich; V Z C Paes; J Geshev; C E M Campos
Journal:  RSC Adv       Date:  2020-10-27       Impact factor: 4.036

  2 in total

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