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Local spin dynamics in doped cobalt(II)-radical magnetic chains studied by H-1 NMR

机译:H-1 NMR研究掺杂钴(II)-自由基磁链中的局部自旋动力学

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We investigated the spin dynamics of Zn(II)-doped "single-chain magnet" (SCM) Co(hfac)(2)NITPhOMe (in short CoPhOMe) by means of H-1 NMR measurements. CoPhOMe was the first magnetic chain that showed a slowly relaxing magnetization (commonly called spins' or magnetization "slowing down" mechanism), which follows the predictions of the Glauber model: the electronic spin freezing sets in before any transition to long-range magnetic order. The slowing down of the magnetization is also evidenced in the Zn-doped samples, which present chains that reach an average length of some tenth of spins for the highest doping, together with growing finite-size effects as the doping concentration is increased. The nuclear spin-lattice relaxation rate T-1(-1) (T) at different applied magnetic fields, displayed a high-temperature peak and a low-temperature shoulder that become lower and shifts toward higher temperatures with increasing the field. This behaviour is qualitatively in agreement with the recent AC susceptibility data that revealed the Glauber dynamics and finite-size effects, like the collective reversal of the spins of each chain segment.
机译:我们通过H-1 NMR测量研究了掺杂Zn(II)的“单链磁体”(SCM)Co(hfac)(2)NITPhOMe(简称CoPhOMe)的自旋动力学。 CoPhOMe是第一个显示出缓慢松弛的磁化强度(通常称为自旋或磁化“减慢”机制)的磁链,该磁链遵循了格劳伯模型的预测:电子自旋冻结开始于向长程磁阶转变之前。在掺杂锌的样品中也证明了磁化的减慢,该样品呈现出达到最高掺杂平均达到自旋十分之一的平均长度的链,并且随着掺杂浓度的增加,有限尺寸效应也在不断增长。在不同的施加磁场下,核自旋晶格弛豫速率T-1(-1)(T)表现出一个高温峰值和一个低温肩部,它们随着磁场的增加而变低并向较高温度移动。这种行为在质量上与最近的AC磁化率数据一致,该数据显示了Glauber动力学和有限尺寸效应,例如每个链段自旋的集体逆转。

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