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Pressure effects on an organic radical ferromagnet: 2,5-difluorophenyl-a-nitronyl nitroxide

机译:对有机基铁磁体的压力影响:2,5-二氟苯基-α-亚硝酰基硝基氧化物

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摘要

Raising a transition temperature (Tc) in organic radical ferromagnets is a desire for material scientists. We investigated the pressure effects on an organic radical ferromagnet 2,5-difluorophenyl-ホア-nitronyl nitroxide (2,5-DFPNN), which has a ferromagnetic transition at 0.45 K. The hydrostatic pressure effects were investigated through measurements of ac magnetic susceptibility (マ・ up to P=1.7 GPa, heat capacity (Cp) up to P=1.5 GPa, and powder x-ray diffraction up to P=4.7 GPa. Furthermore, ac magnetic susceptibility under nonhydrostatic pressure was also measured in the pressure region up to 10.0 GPa. As for 2,5-DFPNN, we observed the pressure-induced enhancement of Tc as dTc/dP=7.9テ・0-2 K/GPa [Tc(P=1.5 GPa)=0.57 K], while other prototypes, the ホイ phase of p-NPNN and p-Cl-C6H4-CH=N-TEMPO show the negative pressure effects. The results for the Cp and the crystal structural analysis suggest that the magnetic dimension of the short-range order developing above Tc transforms from one dimension (a axis) to two dimensions (ac plane) under high pressure. This increase of the magnetic dimension probably promotes to increase Tc. The ferromagnetic signal of マ・ however, decreases with increasing pressure, and finally disappears for P>~5.0 GPa. The decrease seems to originate from the decrease of the ferromagnetic interaction along the b axis. Similar instability of organic ferromagnetic long range order against pressure has been observed for the ホイ phase of p-NPNN and p-Cl-C6H4-CH=N-TEMPO.
机译:提高有机自由基铁磁体的转变温度(Tc)是材料科学家的愿望。我们研究了对有机自由基铁磁体2,5-二氟苯基-ホ ア-亚硝基硝基氮氧化物(2,5-DFPNN)的压力影响,该铁磁体在0.45 K处具有铁磁跃迁。通过测量交流磁化率(マ ・ P = 1.7GPa以下,热容量(Cp)P = 1.5GPa以下,粉末X射线衍射P = 4.7GPa以下,还测定了在非静水压下的交流磁化率。到10.0 GPa。对于2,5-DFPNN,我们观察到压力诱导的Tc增强,dTc / dP = 7.9 テ ・ 0-2 K / GPa [Tc(P = 1.5 GPa)= 0.57 K],而其他原型中,p-NPNN和p-Cl-C6H4-CH = N-TEMPO的O相表现出负压效应,Cp的结果和晶体结构分析表明,短程有序磁性在上面发展。在高压下,Tc从一维(一个轴)转换为二维(ac平面),从而增加了磁尺寸可能会提高Tc。マ·的铁磁信号随着压力的增加而减小,最后在P>〜5.0 GPa时消失。减少似乎源自沿b轴的铁磁相互作用的减少。对于p-NPNN和p-Cl-C6H4-CH = N-TEMPO的ホ イ相,已经观察到有机铁磁长程有序不稳定性对压力的不稳定性。

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