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首页> 外文期刊>Chemical science >Transition metal redox switches for reversible “on/off” and “slow/fast” single-molecule magnet behaviour in dysprosium and erbium bis-diamidoferrocene complexes
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Transition metal redox switches for reversible “on/off” and “slow/fast” single-molecule magnet behaviour in dysprosium and erbium bis-diamidoferrocene complexes

机译:过渡金属氧化还原开关可用于和双二mid基二茂铁配合物的可逆“开/关”和“慢/快”单分子磁体行为

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Single-molecule magnets (SMMs) are considered viable candidates for next-generation data storage and quantum computing. Systems featuring switchability of their magnetization dynamics are particularly interesting with respect to accessing more complex logic gates and device architectures. Here we show that transition metal based redox events can be exploited to enable reversible switchability of slow magnetic relaxation of magnetically anisotropic lanthanide ions. Specifically, we report anionic homoleptic bis-diamidoferrocene complexes of Dy3+ (oblate) and Er3+ (prolate) which can be reversibly oxidized by one electron to yield their respective charge neutral redox partners (Dy: [1]?, 1; Er: [2]?, 2). Importantly, compounds 1 and 2 are thermally stable which allowed for detailed studies of their magnetization dynamics. We show that the Dy3+[1]?/1 system can function as an “on”/“off” or a “slow”/“fast” redox switchable SMM system in the absence or presence of applied dc fields, respectively. The Er3+ based [2]?/2 system features “on”/“off” switchability of SMM properties in the presence of applied fields. Results from electrochemical investigations, UV-vis-NIR spectroscopy, and 57Fe M?ssbauer spectroscopy indicate the presence of significant electronic communication between the mixed-valent Fe ions in 1 and 2 in both solution and solid state. This comparative evaluation of redox-switchable magnetization dynamics in low coordinate lanthanide complexes may be used as a potential blueprint toward the development of future switchable magnetic materials.
机译:单分子磁体(SMM)被认为是下一代数据存储和量子计算的可行候选者。就访问更复杂的逻辑门和器件架构而言,具有其磁化动力学可切换性的系统特别有趣。在这里,我们表明可以利用基于过渡金属的氧化还原事件来实现磁性各向异性镧系元素离子的慢磁弛豫的可逆转换能力。具体来说,我们报道了Dy 3 + (扁圆)和Er 3 + (可以被一个电子可逆地氧化以产生各自的电荷中性氧化还原伴侣(Dy:[1] ,1; Er:[2] ,2)。重要的是,化合物1和2具有热稳定性,因此可以对其磁化动力学进行详细研究。我们证明Dy 3 + [1] / 1系统可以用作“ on” /分别在不存在或存在直流磁场的情况下“关闭”或“慢速/快速”氧化还原可切换SMM系统。基于Er 3 + 的[2] / 2系统具有以下功能的“开” /“关”切换能力存在应用字段时的SMM属性。电化学研究,UV-vis-NIR光谱和 57 Fe M?ssbauer光谱的结果表明,1和2中的混合价Fe离子之间存在明显的电子通讯。 2溶液和固态。低配位镧系元素络合物中氧化还原可开关磁化动力学的这种比较评估可以用作未来可开关磁性材料开发的潜在蓝图。

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