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中国物理学会期刊

钾掺杂三(二苯甲酰甲基)铁的超顺磁性

CSTR: 32037.14.aps.71.20212128

Superparamagnetism of potassium-doped tris(diphenacyl) iron

CSTR: 32037.14.aps.71.20212128
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  • 本研究通过高真空退火法制备了钾掺杂三(二苯甲酰甲基)铁分子晶体的粉末样品. X-射线衍射测试结果表明, 合成样品与纯三(二苯甲酰甲基)铁的晶体结构明显不同, 平均晶粒尺寸约为20.5 nm. 直流磁化率和交流磁化率的测试结果表明, 合成的样品具有阻塞温度(TB)约为8.0 K的超顺磁性, 这与纯有机物在1.8—300 K整个测试温区的顺磁性存在本质的差异. 根据拉曼光谱测试结果可以确认, 掺杂材料中钾的4 s电子转移到了三(二苯甲酰甲基)铁的苯环上, 引起了拉曼模式的红移, 同时电荷转移也导致苯环上局域磁矩的形成. 本研究工作对碱金属掺杂芳香烃分子晶体的合成和物性研究具有重要的意义, 并为寻找新型的有机铁磁体提供了一条新的途径.

     

    Synthesis and exploration of intriguing physical properties of alkali-metal-doped aromatic hydrocarbons have been the important research topics in the fields of physics, chemistry and materials science. In this work, a powder sample of potassium-doped tris(diphenacyl) iron molecular crystal is prepared by the high-vacuum annealing method. The X-ray diffraction results show that the crystal structure of the synthesized sample is different from that of pristine tris(diphenacyl)iron. The direct current (DC) magnetic susceptibilitiy shows a pronounced hump structure near 8.0 K, which is distinct from the paramagnetism of pristine material in the whole temperature range of 1.8–300 K. The alternating current (AC) magnetic susceptibility shows that the hump has a significant frequency dependence, which can safely rule out the possibility of antiferromagnetism. The combination of the Vogel-Fulcher law, the Néel-Brown model and the critical slowing down model reveals that the hump originates from superparamagnetism with a blocking temperature (TB) of about 8.0 K. According to the results of Raman spectroscopy, it can be confirmed that the 4s electrons of potassium in the doped material are transferred to the benzene ring of tris(diphenacyl)iron, causing the characteristic Raman modes to be red-shifted and the local magnetic moment to form. Our work is of great significance in exploring alkali-metal-doped aromatic hydrocarbons, and provides a new route for searching organic magnetic materials.

     

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