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SQUID magnetometry combined with in situ cyclic voltammetry: A case study of tunable magnetism of ... formula ...-Fe2O3 nanoparticles

机译:SQUID磁力法与原位循环伏安法相结合:... ...-Fe2O3纳米粒子的可调磁场的案例研究

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摘要

SQUID magnetometry combined with in situ cyclic voltammetry by means of a three-electrode chemical cell opens up novel potentials for studying correlations between electrochemical processes and magnetic behaviour. The combination of these methods shows that the charge-induced variation of the magnetic moment of nanocrystalline maghemite (γ-Fe2O3) of about 4% strongly depends on the voltage regime of charging. Upon positive charging, the charge-induced variation of the magnetic moment is suppressed due to adsorption layers. The pronounced charge-sensitivity of the magnetic moment in the regime of negative charging may either be associated with a redox reaction or with charge-induced variations of the magnetic anisotropy or magnetoelastic coupling.
机译:通过三电极化学池将SQUID磁法与原位循环伏安法相结合,为研究电化学过程与磁行为之间的相关性开辟了新的潜力。这些方法的组合表明,纳米晶磁赤铁矿(γ-Fe2O3)的磁矩的电荷诱导变化在很大程度上取决于充电的电压范围。在带正电荷时,由于吸附层的存在,抑制了磁矩的电荷诱导变化。在负电荷状态下,磁矩的明显电荷敏感性可能与氧化还原反应或电荷诱导的磁各向异性或磁弹性耦合变化有关。

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