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	|  | Author | Rozova, M.G.; Grigoriev, V.V.; Tyablikov, O.A.; Filimonov, D.S.; Zakharov, K.V.; Volkova, O.S.; Vasiliev, A.N.; Antipov, E.V.; Abakumov, A.M. |    
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	|  | Title | Doping of Bi4Fe5O13F with pentagonal Cairo lattice with Cr and Mn: Synthesis, structure and magnetic properties | Type | A1 Journal article | 
	|  | Year  | 2017 | Publication | Materials research bulletin | Abbreviated Journal | Mater Res Bull |  | 
	|  | Volume | 87 | Issue | 87 | Pages | 54-60 |  | 
	|  | Keywords | A1 Journal article; Electron microscopy for materials research (EMAT) |  | 
	|  | Abstract | The substitution of Cr3+ and Mn3+ for Fe3+ in the Bi4Fe6O13F oxyfluoride featuring the magnetically frustrated pentagonal Cairo lattice is reported. Bi4Fe4.1Cr0.9O13F and BiFe4.2Mn0.8O13F have been prepared using a solid state reaction in inert atmosphere. Their crystal structures were studied with transmission electron microscopy, powder X-ray diffraction and Fe-57 Mossbauer spectroscopy (S.G. P4(2)/mbc, a = 8.27836(2)angstrom, c = 18.00330(9) angstrom, R-F = 0.031 (Bi4Fe4.1Cr0.9O13F)), a= 8.29535(3)angstrom, c= 18.0060(1)angstrom, R-F = 0.027 (Bi4Fe4.1Cr0.9O13F)). The structures are formed by infinite rutile-like chains of the edge sharing BO6 octahedra (B transition metal cations) linked by the Fe2O7 groups of two corner-sharing tetrahedra. The"voids in thus formed framework are occupied by the Bi4F tetrahedra. The Fe-57 Mossbauer spectroscopy reveals that Cr3+ and Mn3+ replace Fe3+. exclusively at the octahedral positions. The Mn- and Cr-doped compounds demonstrate antiferromagnetic ordering below T-N =165 K and 120 K, respectively. (C) 2016 Elsevier Ltd. All rights reserved. |  | 
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	|  | Publisher |  | Place of Publication | New York, N.Y. | Editor |  |  | 
	|  | Language |  | Wos | 000392681800009 | Publication Date | 2016-11-17 |  | 
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	|  | ISSN | 0025-5408 | ISBN |  | Additional Links | UA library record; WoS full record; WoS citing articles |  | 
	|  | Impact Factor | 2.446 | Times cited | 1 | Open Access | Not_Open_Access |  | 
	|  | Notes | ;  The work has been supported by the Russian Science Foundation (grant 14-13-00680).  ; | Approved | Most recent IF: 2.446 |  | 
	|  | Call Number | UA @ lucian @ c:irua:141535 | Serial | 4498 |  | 
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