首页> 外文期刊>Physical Review, B. Condensed Matter >Polarized neutron diffraction and Mossbauer spectral study of short-range magnetic correlations in the ferrimagnetic layered compounds (PPh4) [(FeFeIII)-Fe-II(ox)(3)] and (NBu4) [(FeFeIII)-Fe-II(ox)(3)] - art. no. 104407
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Polarized neutron diffraction and Mossbauer spectral study of short-range magnetic correlations in the ferrimagnetic layered compounds (PPh4) [(FeFeIII)-Fe-II(ox)(3)] and (NBu4) [(FeFeIII)-Fe-II(ox)(3)] - art. no. 104407

机译:亚铁磁性层状化合物(PPh4)[(FeFeIII)-Fe-II(ox)(3)]和(NBu4)[(FeFeIII)-Fe-II(ox)中的短程磁相关的极化中子衍射和Mossbauer光谱研究)(3)]-艺术。没有。 104407

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Short-range antiferromagnetic correlations have been studied in the layered compounds (PPh4) [(FeFeIII)-Fe-II(ox)(3)] and (NBu4) [(FeFeIII)-Fe-II(ox)(3)] by neutron polarization analysis and Mossbauer spectroscopy. Polarized neutron diffraction profiles obtained between 2 and 50 K on (d(20)-PPh4) [(FeFeIII)-Fe-II(ox)(3)] show no magnetic Bragg scattering; the lack of such scattering indicates the absence of long-range magnetic order. However, a broad asymmetric feature observed at a Q of ca. 0.8 Angstrom(-1) is attributed to two-dimensional short-range magnetic correlations, which are described by a Warren function. The correlation length is ca. 50 A between 2 and 30 K and then decreases to ca. 20 Angstrom at 50 K. The Mossbauer spectra of (PPh4) [(FeFeIII)-Fe-II(ox)(3)] and (NBu4) [(FeFeIII)-Fe-II(ox)(3)] have been measured between 1.9 and 293 K and 1.9 and 315 K, respectively, and are very similar. The paramagnetic spectra exhibit both high-spin Fe-II and Fe-III doublets with relative areas which indicate a 5% and 2% excess, respectively, of Fe-III. The coexistence in (PPh4) [(FeFeIII)-Fe-II(ox)(3)] between 10 and 30 K of broad sextets and doublets in the Mossbauer spectra and the paramagnetic scattering observed in the polarized neutron measurements indicate the coexistence of spin-correlated and spin-uncorrelated regions in the layers of this compound. The polarized neutron scattering profiles and the Mossbauer spectra yield the magnetic exchange correlation length and lifetime, respectively, and the combined results are best understood in terms of layers composed of random frozen, but exchange correlated domains of ca. 50 Angstrom diameter at the lowest temperatures, of spin-correlated domains and spin-uncorrelated regions at intermediate temperatures, and of largely spin-uncorrelated regions above the Neel temperature as determined from magnetometry. The similarity of the Mossbauer spectra of (PPh4) [(FeFeIII)-Fe-II(ox)(3)] and (NBu4) [(FeFeIII)-Fe-II(ox)(3)] leads to the conclusion that similar magnetic exchange correlations are present in the latter compound. [References: 36]
机译:在层状化合物(PPh4)[(FeFeIII)-Fe-II(ox)(3)]和(NBu4)[(FeFeIII)-Fe-II(ox)(3)]中,研究了短程反铁磁相关性。中子极化分析和莫斯鲍尔光谱学。在(d(20)-PPh4)[(FeFeIII)-Fe-II(ox)(3)]上2至50 K之间获得的极化中子衍射图表明没有磁布拉格散射;缺少这种散射表明没有远距离磁阶。但是,在Q的Q处观察到广泛的不对称特征。 0.8埃(-1)归因于二维短程磁相关,由沃伦函数描述。相关长度是大约。 50 A在2到30 K之间,然后降低到大约在50 K下20埃。已测量(PPh4)[(FeFeIII)-Fe-II(ox)(3)]和(NBu4)[(FeFeIII)-Fe-II(ox)(3)]的Mossbauer光谱分别介于1.9 K和293 K之间以及1.9 K和315 K之间,并且非常相似。顺磁谱显示出高自旋的Fe-II和Fe-III双重峰,相对面积分别表明Fe-III过量5%和2%。 Mossbauer光谱中宽六边形和双峰的10-30 K之间的(PPh4)[(FeFeIII)-Fe-II(ox)(3)]共存,以及在极化中子测量中观察到的顺磁散射表明自旋共存该化合物层中的-相关和自旋非相关区域。极化中子散射曲线和Mossbauer谱分别产生了磁交换相关长度和寿命,并且根据由随机冻结但交换的ca的相关域组成的层,可以最好地理解组合结果。根据磁强法测定,在最低温度下,自旋相关区域和自旋非相关区域在最低温度下为50埃直径,并且在Neel温度以上的大部分自旋非相关区域。 (PPh4)[(FeFeIII)-Fe-II(ox)(3)]和(NBu4)[(FeFeIII)-Fe-II(ox)(3)]的Mossbauer光谱的相似性得出以下结论:后者化合物中存在磁交换相关性。 [参考:36]

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