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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >EPR Study of Structural Phase Transition in Manganese-Doped [(CH3)(2)NH2][Zn(HCOO)(3)] Metal-Organic Framework
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EPR Study of Structural Phase Transition in Manganese-Doped [(CH3)(2)NH2][Zn(HCOO)(3)] Metal-Organic Framework

机译:EPR研究锰掺杂[(CH3)(2)NH2] [Zn(HCOO)(3)]金属-有机骨架的结构相变

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We present an electron paramagnetic resonance (EPR) study of [(CH3)(2)NH2][Zn(HCOO)(3)] metal organic framework (MOP) powder doped with a small amount of paramagnetic Mn2+ ions. Our EPR measurements indicate a successful incorporation of local Mn2+ probes into the structure allowing us to detect and investigate an order disorder structural phase transition in the studied MOF. The temperature-dependent continuous wave (CW) X- and Q- band EPR measurements reveal a sudden change in the spectra at a phase transition temperature T-0 = 163 K. Simulations were performed to determine the spin Hamiltonian parameters of the spectra which reflect the local symmetry of the Mn2+ probes in the disordered and ordered phases. The temperature dependence of the axial zero-field splitting parameter D demonstrates that the observed phase transition at To is Additionally, this dependence follows the prediction of the Landau theory. We also performed preliminary pulse measurements which reveal a rather long phase memory time sufficient to detect a spin echo even in the high-temperature disordered phase. The modulation with the proton and nitrogen Larmor frequencies of the electron spin echo was observed as well.
机译:我们提出了掺杂有少量顺磁性Mn2 +离子的[(CH3)(2)NH2] [Zn(HCOO)(3)]金属有机骨架(MOP)粉末的电子顺磁共振(EPR)研究。我们的EPR测量表明,成功地将局部Mn2 +探针掺入了结构,从而使我们能够检测和研究所研究MOF中的有序无序结构相变。随温度变化的连续波(CW)X和Q波段EPR测量结果显示,在相变温度T-0 = 163 K时,光谱发生了突然变化。进行了模拟以确定光谱的自旋哈密顿量参数,这些参数反映了Mn2 +探针在无序和有序相中的局部对称性。轴向零场分裂参数D的温度依赖性表明,在To处观察到的相变为。此外,这种依赖性遵循Landau理论的预测。我们还进行了初步的脉冲测量,揭示了相当长的相位存储时间,即使在高温无序相中也足以检测到自旋回波。还观察到了电子自旋回波的质子和氮拉莫尔频率的调制。

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