CATION DISTRIBUTION AND COORDINATION CHEMISTRY OF CU(II) IN ZN(II) HYDROXIDE NITRATE SOLID-SOLUTIONS - A STRUCTURAL AND SPECTROSCOPIC STUDY

被引:6
作者
ATANASOV, M
PETROV, K
MIRTCHEVA, E
FRIEBEL, C
REINEN, D
机构
[1] UNIV MARBURG,FACHBEREICH CHEM,D-35032 MARBURG,GERMANY
[2] UNIV MARBURG,ZENTRUM MAT WISSENSCH,D-35032 MARBURG,GERMANY
关键词
D O I
10.1006/jssc.1995.1349
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The X-ray powder diffraction analysis of the appearing phases in hydroxide nitrate compounds (ZnxCu1-x) (OH)(2-y)(NO3H)(y) . zH(2)O is reported. Single-phase solid solutions are detected only for 0 < x < 0.30 (structural type Cu-2(OH)(2)NO3, phase I) and for 0.50 < x < 0.65 (structural type Zn-3(OH)(4)(NO3)(2), phase I'). In the interval 0.3 < x < 0.5 the structurally closely related phases I and I' coexist. For 0.65 < x less than or equal to 1.0 a second two-phase region with I' and a third structure type Zn-5(OH)(8)(NO3)(2) . 2H(2)O (phase Pi-b) was observed. From the intensities of the X-ray reflections and the dependence of the lattice parameter b' on x it was deduced that only a small fraction of Cu2+ enters phase Pi-b. Using the structural data and the EPR spectra together with calculations within the angular overlap model (AOM) the observed EPR signals could be correlated with the occupation of the various Zn2+ sites by Cu2+ in the three phases. It was also possible to derive the changes of the Zn2+ host site geometries induced by substituting Cu2+ ions due to vibronic coupling. The nicely resolved EPR spectra at high x values originate from small amounts of Cu2+ in phase Pi-b. They display patterns of tetragonally elongated and-in the dynamical average-compressed Cu(OH)(6) octahedra at higher temperatures, which are assigned to the Zn(2) and Zn(1) sites, respectively. At 5 K the latter polyhedron freezes into a geometry with a strong orthorhombic distortion component due to vibronic Jahn-Teller coupling. The EPR spectra further indicate that the bulk of Cu2+ enters phases I and I'. Powder reflectance spectra at 5 K are in support of these conclusions. The bonding parameters of Cu2+ in phase Pi-b have been determined from the well-resolved hyperfine structure in the EPR spectra. (C) 1995 Academic Press, Inc.
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页码:303 / 312
页数:10
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