Repozytorium

Formation of correlated spin systems in one-and two-dimensional copper and lanthanide compounds.

Autorzy

Yu. V. Yablokov

V. K. Voronkova

Janina Legendziewicz

Ewa Huskowska

Grażyna Oczko

Małgorzata Borzechowska

Rok wydania

2000

Czasopismo

Applied Magnetic Resonance

Numer woluminu

18

Strony

165-176

DOI

10.1007/bf03162108

Kolekcja

Naukowa

Język

Angielski

Typ publikacji

Artykuł

Streszczenie

Electron paramagnetic resonance (EPR) of the systems of exchange-coupled ions differing strongly by spin-lattice relaxation times are discussed. The physical description of a rapid process which modulates and averages out the other, more slow one, is extended to the situations when para magnetic ions participate in several exchange processes. The layered copper-neodymium squarate, [CuNd2(C4O4)(4)H2O16]. 2H(2)O (I), and the one-dimensional copper-lanthanide Cl-3-acetates, CuLn(2)X (Cl3CCOO)(8). 6H(2)O (Ln = Nd3+ (II), Pr-(3+) (III)), were investigated by X-band EPR in the temperature range 4.2-300 K. These compounds were shown to consist of subunits admitting exchange interaction between Cu ions, Cu-Nd ions and Nd-Nd ions. At high temperatures the short spin-lattice relaxation time of Nd3+ averages out the Cu-Nd exchange interaction. The manifestation of this interaction should be temperature dependent when governed by the spin-lattice relaxation of one of the partners. The collective Cu spin-system exists in I at T > 250 K (J(Cu-Cu) approximate to 0.1 cm(-1)) and gradually transforms into Cu-Nd spin-system which dominates at T < 20-30 K (J(Cu-Nd) approximate to 0.4 cm(-1)) with J(Cu-Nd) > J(Cu-Cu) > J(Nd-Nd). Polymer chains in II may be considered as weakly interacting asymmetrical triads -Nd-1-Cu-Nd-2- (with the largest components of J(if) tensor 30.3 cm(-1)). For III the lowest state of Pr3+ was proved to be a nonmagnetic singlet with J(Cu-Pr) equal to zero. Very weak, temperature-dependent exchange interaction between Cu2+ ions via two Pr3+ ions (J(Cu-Cu) approximate to 0.015 cm(-1) at T=4.2 K) was observed.

Adres publiczny

http://dx.doi.org/10.1007/bf03162108

Strona internetowa wydawcy

http://link.springer.com

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