Layered transition metal carboxylates: synthesis, structural aspects and observation of multi-step magnetic transition through phase diagram

abstract

Two new layered transition metal carboxylate frameworks, [Co-3(L)(2)(H2O)(6)]center dot 2H(2)O (1) and [Ni-3(L)(2)(H2O)(6)]center dot 2H(2)O (2) (L = tartronate anion or hydroxymalonic acid), have been synthesized and characterized by X-ray single crystal analysis. Both compounds have similar 2D structures. In both compounds there are two types of metal centers where one center is doubly bridged by the alkoxy oxygen atoms through mu(2)-O bridging to form a 1D infinite chain parallel to the crystallographic b-axis with the corners shared between the metal polyhedra. Magnetic susceptibility measurements revealed the existence of antiferromagnetic short range correlations between Co(Ni) intra-chain metal centers (with exchange constants J(Co) = -22.6 and J(Ni) = -35.4 K). At low temperatures, long range order is observed in both compounds at Neel temperatures of 11 (for 1) and 16 (for 2) K, revealing that other exchange interactions, rather than the intra-chain ones, play a role in these systems. Whereas compound 1 has an antiferromagnetic ground state, compound 2 exhibits a ferromagnetic component, probably due to spin canting. Isothermal magnetization data unveiled a rich phase diagram with three metamagnetic phase transitions below 8 K in compound 1.

keywords

ZEOLITIC IMIDAZOLATE FRAMEWORKS; ORGANIC FRAMEWORKS; HYDROTHERMAL SYNTHESIS; COORDINATION POLYMER; CRYSTAL-STRUCTURE; MIXED AZIDE; BEHAVIOR; TEMPERATURE; COPPER(II); COMPLEXES

subject category

Chemistry

authors

Sen, R; Mal, D; Lopes, AML; Brandao, P; Araujo, JP; Lin, Z

our authors

acknowledgements

This work was supported by FCT, POCI2010, FSE and FEDER. R. S. thanks FCT for post-doctoral grants (SFRH/BPD/71798/2010). AMLL acknowledges financial support from FSE/POPH.

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