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Tuning the magnetic properties of NiPS3 through organic-ion intercalation

机译:调优NiPS3的磁性organic-ion夹层

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Atomically thin van der Waals magnetic crystals are characterized by tunable magnetic properties related to their low dimensionality. While electrostatic gating has been used to tailor their magnetic response, chemical approaches like intercalation remain largely unexplored. Here, we demonstrate the manipulation of the magnetism in the van der Waals antiferromagnet NiPS3 through the intercalation of different organic cations, inserted using an engineered two-step process. First, the electrochemical intercalation of tetrabutylammonium cations (TBA(+)) results in a ferrimagnetic hybrid compound displaying a transition temperature of 78 K, and characterized by a hysteretic behavior with finite remanence and coercivity. Then, TBA(+) cations are replaced by cobaltocenium via an ion-exchange process, yielding a ferrimagnetic phase with higher transition temperature (98 K) and higher remanent magnetization. Importantly, we demonstrate that the intercalation and cation exchange processes can be carried out in bulk crystals and few-layer flakes, opening the way to the integration of intercalated magnetic materials in devices.
机译:自动薄范德瓦耳斯磁晶体特点是可调的磁性与维数较低有关。静电控制被用来裁缝他们的磁响应、化学方法夹层在很大程度上仍未知。演示操作的磁性范德瓦耳斯的反铁磁性物质NiPS3通过不同的有机阳离子的夹层,插入使用一个两步的过程。首先,电化学的夹层四丁铵阳离子(稍后通知(+))的结果亚铁磁性混合复合显示转变温度78 K,特点由一个滞回行为与有限的剩磁和矫顽力。通过一个离子交换过程,cobaltocenium收益率较高的亚铁磁性阶段转变温度(98 K)和更高的剩余磁化。夹层和阳离子交换过程可以进行批量水晶和few-layer吗片,打开的集成方法在设备间磁性材料。

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