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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Bimetallic Mn-III-Fe-II hybrid complexes formed by a functionalized Mn-III Anderson polyoxometalate coordinated to Fe-II: observation of a field-induced slow relaxation of magnetization in the Mn-III centres and a photoinduced spin-crossover in the Fe-II centres
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Bimetallic Mn-III-Fe-II hybrid complexes formed by a functionalized Mn-III Anderson polyoxometalate coordinated to Fe-II: observation of a field-induced slow relaxation of magnetization in the Mn-III centres and a photoinduced spin-crossover in the Fe-II centres

机译:由功能化的Mn-III安德森多金属氧酸盐与Fe-II配位形成的双金属Mn-III-Fe-II杂化配合物:观察到的磁场诱导的Mn-III中心磁化缓慢弛豫和Fe中的光诱导自旋交叉-II中心

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摘要

The synthesis and crystal structure of an Anderson POM functionalized with two 2,6-di(pyrazol-1-yl)-pyridine(1-bpp) ligands are reported (compound 1). High-frequency electron paramagnetic resonance (HF-EPR) and magnetic measurements show that it presents a significant negative axial zero-field splitting and field-induced slow relaxation of magnetization due to the presence of isolated Mn-III anisotropic magnetic ions. Complexation of 1 with Fe-II gives rise to a 2D cationic network formed by Anderson POMs coordinated to two Fe-II ions through the two tridentate 1-bpp ligands and to other two Fe-II ions through two oxo ligands in compound 2, and to an anionic polymeric network formed by Anderson POMs coordinated through the 1-bpp ligands to two Fe-II, which are coordinated to two 1-bpp ligands from two neighbouring POMs, in compound 3. The crystal structure of 2 has been solved. Magnetic properties show that the Fe-II atoms of 3 remain in the low-spin state, while those of 2 remain in the high-spin state due to coordination to oxygen atoms from a neighbouring POM and dimethylformamide and water solvent molecules. Irradiation of 3 at 10 K with green light induces a spincrossover (LIESST effect) with a small but significant photoconversion (similar to 8%). Finally, AC susceptibility measurements of 2, 3 and (C16H36N)(3)[MnMo6O18{(OCH2)(3)CNH2}(2)] (4) confirm field-induced slow relaxation of magnetization of Mn-III Anderson POMs.
机译:报道了用两个2,6-二(吡唑-1-基)-吡啶(1-bpp)配体官能化的安德森POM的合成和晶体结构(化合物1)。高频电子顺磁共振(HF-EPR)和磁测量表明,由于存在孤立的Mn-III各向异性磁性离子,它呈现出显着的负轴向零场分裂和磁场诱导的磁化慢弛豫。 1与Fe-II的络合产生了由Anderson POM形成的2D阳离子网络,它通过化合物2中的两个三齿1-bpp配体与两个Fe-II离子配位,并通过两个氧代配体与另外两个Fe-II离子配位;在化合物3中,通过由1-bpp配体与两个Fe-II配位的安德森POM形成的阴离子聚合物网络,所述Fe-II与来自两个相邻POM的两个1-bpp配体配位。在化合物3中,已经解决了2的晶体结构。磁性能表明3的Fe-II原子保持在低自旋状态,而2的那些由于与邻近的POM和二甲基甲酰胺以及水溶剂分子中的氧原子配位而保持在高自旋状态。用10 K的绿光照射3会引起自旋交变(LIESST效应),光转换很小但很明显(约8%)。最后,对2、3和(C16H36N)(3)[MnMo6O18 {(OCH2)(3)CNH2}(2)](4)的交流磁化率测量证实了Mn-III Anderson POMs的磁场诱导的磁化慢弛豫。

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