A. Leineweber et al., Co(NH3)(2)Cl-2 and Co(ND3)(2)Cl-2: Order-disorder behaviour of N(H, d)(3) and antiferromagnetic structure, Z ANORG A C, 627(9), 2001, pp. 2063-2069
Citations number
29
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE
Diammine cobalt(II) chloride, Co(N(H, D)(3))(2)Cl-2 was prepared by decompo
sition of the corresponding hexaammines at 120 degreesC in dynamical vacuum
. Crystal structures and magnetic properties of these materials were charac
terised by X-ray and neutron powder diffraction, and heat capacity measurem
ents.
At ambient temperatures Co(N(H, D)(3))(2)Cl-2 crystallises in the Cd(NH3)(2
)Cl-2 type structure: space group Cmmm, Z = 2, a = 8.0512(2) Angstrom, b =
8.0525(2) Angstrom, c = 3.73318(9) Angstrom (X-ray data of the H compound).
This structure consists of chains of edge-sharing octahedra (1)(infinity)[
CoCl4/2(NH3)(2)] running along the c-axis. Neutron diffraction confirms tha
t that the ND3 groups are rotationally disordered at ambient temperatures.
At 1.5 K and 20 K neutron diffraction data reveal rotational ordering of th
e ND3 groups leading to doubling of the c-axis and to Ibmm symmetry: a = 7.
9999(6) Angstrom, b = 7.9911(5) Angstrom, c = 7.4033(3) Angstrom (Z = 4, va
lues for T = 1.5 K). Furthermore, antiferromagnetic ordering is present at
these temperatures. It is caused by a ferromagnetic coupling of the magneti
c moments at Co2+ (3.60(5) mu (B) at 1.5 K, 3.22(5) mu (B) at 20 K) along t
he octahedra chains (1)(infinity)[CoCl4/2(NH3)(2)] and antiferromagnetic co
upling between neighbouring chains. According to heat capacity measurements
the phase transition antiferromagnetic-paramagnetic takes place at T-N = 2
6 K.