Magnetic Studies in Mixed-Metal Valency Molecule Magnets NBu4FeιιnMnιι1-n[Feιιι(OX)3](n=0.03, 0.10, 0.15, 0.97)

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Abstract:

The mixed valency character and antiferromagnetic coupling in Molecule magnets Materials NBu4FeIInMnII1-n[FeIII(OX)3](n=0.03、0.10、0.15、0.97) were investigated by magnetic measurements.The values of M increase and exhibit weak irreversibility in the field-cooled (FC) magnetization curves. There are a clear bifurcation phenomenon of the field-cooled (MFC) and Zero-field-cooled (MZFC) magnetization curves.In the Molecule magnets Materials NBu4FeII0.10 MnII0.90[FeIII(OX)3],the Ne´el temperature is 34 K.And the Ne´el temperature of NBu4FeII0.15MnII0.85 [FeIII(OX)3] is 28 K.In the sample NBu4FeII0.03 MnII0.97[FeIII(OX)3],,the bifurcation of the ZFC and FC plots below the Ne´el temperature of 30 K indicates irreversibility.The oxalate group has been shown to be an excellent bridging ligand in supporting the magnetic exchange interaction.

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259-262

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September 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] C Mathonière, S G Carling, Y S Dou, et al: J Chem Soc, Chem Commun, 1994, 1551.

Google Scholar

[2] Donatella Armentano, Giovanni De Munno, Francesc Lloret, et al: Inorg Chem, 2002, 41, 2007.

Google Scholar

[3] H Tamaki, Z J Zhong, N Matsumoto, et al: J Am Chem Soc, 1992, 114, 6974.

Google Scholar

[4] Corine Mathonière, Christopher J Nuttall, Simon G Carling, et al: Inorg Chem, 1996, 35, 1201.

Google Scholar

[5] Qing Lin, Chenglong Lei, Hui Zhang, et al. Physics Procedia 25 ( 2012 ) 369 –374.

Google Scholar

[6] C Mathoniere, C J Nutall, S G Carling, et al: Inorg Chem, 1995, 35, 1201.

Google Scholar

[7] J C Bailar, E M Jones: Inorg Synth, 1939, 1, 37.

Google Scholar

[8] C Mathonière, S G Carling, Y S Dou, et al: J Chem Soc, Chem Commun, 1994, 1551.

Google Scholar

[9] Y. Ren, T. T. M. Palstra, D. I. Khomskii, E. Pellegrin, et al.Nature (London) 396 (1998) 441.

Google Scholar

[10] Oliver Cador, Maria G. f. Vaz, et a,J. Magn. Magn. Mater. 234 (2001) 6.

Google Scholar

[11] A BhaUacharjee, S lijima, F Mizutani, et a, Jpn J Appl Phys, Part 1, 1995, 34, 1521.

Google Scholar

[12] Qing Lin, Chenglong Lei, Guodong Tang, et al, Physics Procedia 25 ( 2012 ) 375 – 381.

Google Scholar

[13] C S Kim, J Childress, C L Chien: J Appl Phys, 1991, 70, 6092.

Google Scholar

[14] K. J. Standley, Oxide Magnetic Materials, Calerendon Press, Oxford, 1962.

Google Scholar