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Impact of dehydration and mechanical amorphization on the magnetic properties of Ni(ii)-MOF-74

机译:脱水和机械无杂化对Ni(II)-MOF-74磁性的影响

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Mechanically responsive metal-organic frameworks (MOFs) came very recently into the spotlight of material science for their unique properties and potential new fields of application. We present here a clarification of the magnetic properties of prototypical magnetic MOF-74 material, Ni(ii)-MOF-74, using magnetization measurements, X-band electron spin resonance (ESR), multi-frequency high-field ESR (HF-ESR), and theoretical model. It was established that the guests populating the honeycomb channels have little influence on the magnetism of Ni-MOF-74, whereas magnetic properties change significantly upon mechanical amorphization. Amorphous material (am-Ni-MOF-74), which can be readily prepared by the mechanochemical treatment of dehydrated Ni-MOF-74 (deh-Ni-MOF-74), as shown by in situ monitoring methods, displays significantly lower bulk magnetization compared to Ni-MOF-74 and deh-Ni-MOF-74. This decline in magnetization is established to be a consequence of the spin-crossover from high-spin to a low-spin state of nickel(ii) ions. The observed spin-crossover was rationalized by an insight into the changes of the nickel coordination sphere during the amorphization, which was provided by solid-state nuclear magnetic resonance (NMR) and infrared (IR) spectroscopy. Additionally, it was found that am-Ni-MOF-74 behaves differently than its zinc analogue when exposed to vapors or liquid-additives in the milling process, indicating that the nature of the metal node plays a substantial role in the mechanical properties of this modular family of MOF materials.
机译:机械响应金属 - 有机框架(MOF)最近进入了物质科学的聚焦,为其独特的特性和潜在的应用新的应用领域。我们在此阐明了原型磁性MOF-74材料的磁性特性,Ni(ii)-mof-74,使用磁化测量,X频带电子自旋共振(ESR),多频高场ESR(HF- ESR)和理论模型。建立填充蜂窝通道的客人对Ni-Mof-74的磁性影响不大,而磁性在机械非晶作用下显着变化。无定形材料(AM-Ni-MOF-74),可以通过脱水Ni-Mof-74(Deh-Ni-Mof-74)的机械化学处理来容易地制备,如原位监测方法所示,显示出明显更低的散装磁化与Ni-Mof-74和Deh-Ni-Mof-74相比。确定磁化的这种下降是从高旋转到镍(II)离子的低旋转状态的旋转交叉的结果。观察到的旋转交叉通过洞察于在非态核磁共振(NMR)和红外(IR)光谱提供的非核化期间的镍协调球的变化来合理化。另外,发现AM-Ni-Mof-74的表现在铣削过程中蒸气或液体添加剂时,表明金属节点的性质在这方面发挥了重要作用模块化家庭MOF材料。

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