2001
DOI: 10.1103/physrevb.63.113103
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Hyperfine structure and exchange coupling with conduction electrons in the quasi-one-dimensional organic metalCo0.01Ni0.99

Abstract: We found an anisotropic hyperfine structure in the magnetically diluted alloy system, quasi-one-dimensional organic conductor, Co 0.01 Ni 0.99 Pc͑AsF 6 ͒ 0.5 (PcϭC 32 N 8 H 16 ), and confirmed that the doped CoPc was relevantly substituted. The hyperfine signal was replaced by a broad Lorentzian signal at ϳ30 K. The HЌc broad signal shifted and narrowed with increasing temperatures. We interpreted the temperature-dependent g value and linewidth based on Hasegawa's phenomenological theory for dilute magnetic al… Show more

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Cited by 5 publications
(4 citation statements)
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“…The Lorentzian shape of the single EPR absorption line, which suggests the strong magnetic exchange interaction between the verdazyl cation and [Ni(dmit) 2 ] - anion spins, was observed for the Ni salt ( 1 ). In such a case, the temperature dependence of the g -value of the Ni salt ( 1 ) is given by eq 2 , where the g V + and g Ni − are the g -values of the verdazyl cation and [Ni(dmit) 2 ] - anion, respectively. χ V + ( T ) and χ Ni − ( T ) will correspond to χ Curie - Weiss ( T ) and χ 1D - Alt ( T ) in eq 1, respectively.…”
Section: Discussionmentioning
confidence: 99%
“…The Lorentzian shape of the single EPR absorption line, which suggests the strong magnetic exchange interaction between the verdazyl cation and [Ni(dmit) 2 ] - anion spins, was observed for the Ni salt ( 1 ). In such a case, the temperature dependence of the g -value of the Ni salt ( 1 ) is given by eq 2 , where the g V + and g Ni − are the g -values of the verdazyl cation and [Ni(dmit) 2 ] - anion, respectively. χ V + ( T ) and χ Ni − ( T ) will correspond to χ Curie - Weiss ( T ) and χ 1D - Alt ( T ) in eq 1, respectively.…”
Section: Discussionmentioning
confidence: 99%
“…Recent emerging research on Pcs involves their magnetic properties in a one-dimensional array or in a thin-film form. Although the research on the magnetism of organic materials in bulk form has a long history, recent investigations of such a low-dimensional system have been motivated by the expectation that the magnetism of those systems may be remarkably different from that in bulk. One of the objectives in the research field called molecular magnetism is to control the magnetic properties at the scale of an individual molecule or single molecule layer.…”
Section: Introductionmentioning
confidence: 99%
“…The metal-phthalocyanine molecule is advantageous, since it provides the -d interaction between the electron conduction of the phthalocyanine molecular orbitals and the local moment of the central transition metal. [5][6][7][8] Figure 1(a) shows the dicyano(phthalocyaninato)iron [Fe(Pc)(CN) 2 ] molecule. 9) In this letter, we report the magnetoresistance and its dependence on the magnetic field angle in the Fe(Pc)(CN) 2 molecular complexes.…”
mentioning
confidence: 99%