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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Magneto-structural correlations in oxalate-bridged Sr(ii)Cr(iii) coordination polymers: structure, magnetization, X-band, and high-field ESR studies
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Magneto-structural correlations in oxalate-bridged Sr(ii)Cr(iii) coordination polymers: structure, magnetization, X-band, and high-field ESR studies

机译:草酸盐桥(II)Cr(III)配位聚合物中的磁结构相关性:结构,磁化,X波段和高场ESR研究

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The results of high-field electron spin resonance (HF-ESR) spectroscopy on the title 1D coordination polymers at frequencies up to 415 GHz, supported by X-ray diffraction, thermal, magnetic susceptibility, and X-band (10 GHz) ESR studies, are presented. The heterometallic compounds {SrCr2(phen)(2)(C2O4)(4)}center dot H2O (SrCrPhen) and {SrCr2(bpy)(2)(C2O4)(4)(H2O)}center dot 5H(2)O (SrCrBpy) (phen = 1,10-phenanthroline, bpy = 2,2-bipyridine) were synthesized. Structural analysis revealed double oxalate-bridged zigzag Sr-Cr chains while magnetic susceptibility studies showed paramagnetic behaviour of the complexes. HF-ESR spectroscopy data were analysed with a relevant spin-Hamiltonian, yielding the g, D and E parameters of the Cr(iii) ions. Both complexes showed small magnetic easy-axis type anisotropy with vertical bar D vertical bar approximate to 1 K; SrCrBpy has uniaxial anisotropy while SrCrPhen has biaxial anisotropy. HF-ESR studies have enabled us to establish rational magneto-structural correlations and revealed significant differences between very similar crystal structures. Additionally, the ability of SrCrPhen and SrCrBpy to be single-source precursors for the formation of Sr-Cr oxides was investigated.
机译:在标题1D配位聚合物高场电子自旋共振的结果(HF-ESR)光谱学在频率高达415千兆赫,通过X射线衍射,热,磁化率,和X波段(10 GHz)的支持ESR研究,被呈现。杂象化合物{SrCr2(Phen)(2)(2)(C2O4)(4)}中心点H2O(SRCLChen)和{SrCr2(Bpy)(2)(2)(C2O4)(4)(H2O)}中心点5h(2)o (SRCRBPY)(SRCRBPY)(Phen = 1,10-菲咯啉,合成Bpy = 2,2-吡啶)。结构分析显示了双草酸桥锯齿状SR-CR链,而磁性敏感性研究表明复合物的顺磁性行为。用相关的旋转Hamiltonian分析HF-ESR光谱数据,产生Cr(III)离子的G,D和E参数。两种复合物都显示出小型磁性易轴型各向异性,垂直条D垂直条近似为1 k; Srcrbpy具有单轴各向异性,而Srclhen具有双轴各向异性。 HF-ESR研究使我们能够建立合理的磁结构相关性,并在非常相似的晶体结构之间揭示了显着差异。另外,研究了SRCHEN和SRCRBPY作为形成SR-CR氧化物的单源前体的能力。

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