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- W2007625648 abstract "Correlated electron intermetallic bulk systems exhibit exciting phenomena, such as unconventional superconductivity , heavy fermion behavior, magnetic ordering, and quantum criticality. However, such exciting properties in related systems with reduced dimensionality are rather unexplored and unpredictable. In this work, we explore the routes for synthesizing nanowires of the intermetallic antiferromagnet compound GdIn 3 by an innovative method: the metallic-flux nanonucleation (MFNN). This technique allows the simultaneous synthesis of bulk GdIn 3 single crystals ( T N 3 D = 45 K ) and their low-dimensional (LD) analogs, which nucleate with diameter d ≈ 200 nm and length l ≈ 30 μ m inside pores of an Al 2 O 3 template. Both systems were studied by means of Energy Dispersive Spectroscopy (EDS), magnetic susceptibility , heat capacity and electron spin resonance (ESR) measurements. Interestingly, the metallic nanowires show a drastic suppression of the antiferromagnetic ordering to T N LD = 4 K . These observations suggest the presence of LD magnetic frustration in this compound and possibly open a new route to explore the role of low-dimensionality in strongly correlated materials. • Here we employ an innovative growth method to synthesize 1Gd:3In nanowires. • The properties of both systems were studied by macro and microscopic techniques. • A drastic suppression of the bulk magnetic transition is observed in the nanowires. • This suppression is associated to a change in the magnetic RKKY exchange interaction. • Our results suggest a possible low-dimensional magnetic frustration in this compound." @default.
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- W2007625648 date "2014-08-01" @default.
- W2007625648 modified "2023-10-01" @default.
- W2007625648 title "Exploring the effects of dimensionality on the magnetic properties of intermetallic nanowires" @default.
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- W2007625648 doi "https://doi.org/10.1016/j.ssc.2014.04.013" @default.
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