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吡嗪取代基对二氰胺桥联钴(II)配合物结构和磁性的影响。

Influence of the pyrazine substituent on the structure and magnetic properties of dicyanamide-bridged cobalt(ii) complexes.

机构信息

Department of Crystallography, Institute of Chemistry, University of Silesia, Szkolna St. 9, 40-006 Katowice, Poland.

出版信息

Dalton Trans. 2019 Nov 26;48(46):17266-17280. doi: 10.1039/c9dt02976a.

Abstract

Substituted pyrazines were successfully used to prepare two new coordination polymers of formulas {[Co(dca)2(NH2pyz)2]·H2O}n (1) and [Co3(dca)6(HOpyz)5(H2O)2]n (2) [dca = dicyanamide, NH2pyz = 2-aminopyrazine and HOpyz = 2-hydroxypyrazine] whose structures were determined by single-crystal X-ray crystallography. The structure of 1 consists of a two-dimensional rhombus grid of cobalt(ii) ions where the dca ligand adopts the μ1,5 bridging mode with trans-positioned monodentate NH2pyz molecules completing the six-coordination around each metal ion. Compound 2 exhibits a stair-like two-dimensional structure where the intralayer connections are performed by the dca and HOpyz groups exhibiting μ1,5 and bis-monodentate coordination modes, respectively. The values of the cobalt-cobalt separation through the dca bridges are 8.2107(3) (1) and 8.4746(4) and 8.5249(4) Å (2) whereas the value through the hydroxypyrazine is 7.2052(6) Å (2). Solid-state direct-current magnetic susceptibility analyses in the temperature range of 1.9-300 K for 1 and 2 reveal the occurrence of magnetically isolated high-spin cobalt(ii) ions with a significant contribution to the magnetic moment (1 and 2), D = +95.4 (1) and +76.5 cm-1 (2) and the antiferromagnetically coupled pairs of cobalt(ii) centres through the bis-monodentate 2-hydroxypyrazine, J = -0.3 cm-1 (2). Both compounds exhibit frequency dependence of the out-of-phase alternating current (ac) magnetic susceptibility (χ''M) under non-zero applied dc fields, a feature which is characteristic of single-ion magnet behaviour (SIM). Q-band EPR studies on the polycrystalline samples of 1 and 2 at low temperatures confirm the positive sign of D and reveal the occurrence of a strong asymmetry in the g-tensors. Theoretical calculations by CASSCF/NEVPT2 support these results. An analysis of the dynamic behaviour of 1 and 2 suggests that the relaxation of the magnetization occurs in the ground state under applied fields through two Orbach processes possibly bound to low-lying vibrational modes in the high temperature range, and to the slowing down of the fast interconversion between the two contributions of the ground Kramers doublet at lower temperatures induced by the applied dc field.

摘要

取代吡嗪成功地用于制备两个新的配位聚合物,化学式为{[Co(dca)2(NH2pyz)2]·H2O}n (1) 和 [Co3(dca)6(HOpyz)5(H2O)2]n (2) [dca = 二氰胺,NH2pyz = 2-氨基吡嗪和 HOpyz = 2-羟基吡嗪],其结构通过单晶 X 射线结晶学确定。1 的结构由钴(ii)离子的二维菱形网格组成,其中 dca 配体采用μ1,5 桥接模式,反式位置的单齿 NH2pyz 分子完成每个金属离子的六配位。化合物 2 表现出楼梯状二维结构,其中层内连接由 dca 和 HOpyz 基团完成,分别采用μ1,5 和双单齿配位模式。钴-钴通过 dca 桥的分离值分别为 8.2107(3) (1) 和 8.4746(4) 和 8.5249(4) Å (2),而通过羟基吡嗪的分离值为 7.2052(6) Å (2)。1 和 2 在 1.9-300 K 的固态直流磁导率分析表明,存在高自旋钴(ii)离子的磁性隔离,对磁矩有显著贡献(1 和 2),D = +95.4 (1) 和 +76.5 cm-1 (2) 和通过双单齿 2-羟基吡嗪反铁磁耦合钴(ii)中心,J = -0.3 cm-1 (2)。两种化合物在非零外加直流场下均表现出反相交流(ac)磁导率(χ''M)的频率依赖性,这是单离子磁行为(SIM)的特征。低温下对 1 和 2 的多晶样品的 Q 波段电子顺磁共振(EPR)研究证实了 D 的正值,并揭示了 g 张量中存在强烈的不对称性。CASSCF/NEVPT2 的理论计算支持这些结果。1 和 2 的动态行为分析表明,在外加磁场下,通过两个 Orbach 过程,磁化弛豫发生在基态,这两个过程可能与高温范围内的低能振动模式有关,并且与外加直流场引起的基态 Kramers 双峰两个贡献之间的快速相互转换减速有关。

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