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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Chain length dependence of polyol synthesis of zinc ferrite nanoparticles: Why is diethylene glycol so different?
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Chain length dependence of polyol synthesis of zinc ferrite nanoparticles: Why is diethylene glycol so different?

机译:多元醇合成铁酸锌纳米颗粒的链长依赖性:为什么二甘醇如此不同?

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Superparamagnetic ZnFe_2O_4 nanoparticles with size range of 28-38 nm were synthesized by polyol process based on use of varying chain length glycols as solvent. We have offered, for the first time, the plausible mechanism behind in situ formation of zinc ferric oxalate hydroxide hydrate [Fe_2Zn(C_2O_4)_2(OH) _3]~+·4H_2O complex from diethylene and polyethylene glycol. We are also reporting, the magnetic properties of above complexes. We have found a ferromagnetic ordering in precursor complex compounds. The intermediate hydrocarbon chain between the oxalato bridged metal cations plays a crucial role in obtaining anomalous magnetic behavior. ZnFe _2O_4 nanoparticles obtained after annealing the DEGylated precursor complex (precursor complex formed in diethylene glycol) showed the highest superparamagnetic (SPM) behavior (22.4 emu g~(-1)) among others. The reasons for anomalous SPM behavior of ZnFe_2O_4 nanoparticles are explained on the basis of the degree of inversion of the spinel structure, high surface-to-volume ratio, which causes non-collinear spin arrangement in a surface layer and higher oxygen concentration on the surface of dead organic layer, which increases the unpaired valence electrons leading to uncompensated surface spins.
机译:基于多元链长二醇作为溶剂,采用多元醇法合成了尺寸范围为28-38 nm的超顺磁性ZnFe_2O_4纳米粒子。我们首次提供了由二乙烯和聚乙二醇原位生成草酸氢氧化铁锌水合物[Fe_2Zn(C_2O_4)_2(OH)_3]〜··4H_2O络合物的可能机理。我们还报告了上述络合物的磁性。我们发现前驱体复合物中的铁磁有序。草酸桥接金属阳离子之间的中间烃链在获得异常磁行为中起关键作用。在对DEGy化的前体复合物(在二甘醇中形成的前体复合物)进行退火后获得的ZnFe _2O_4纳米粒子显示出最高的超顺磁性(SPM)行为(22.4 emu g〜(-1))。 ZnFe_2O_4纳米粒子的SPM行为异常的原因是根据尖晶石结构的反转程度,高的表面体积比导致表面层中的非共线自旋排列以及表面上较高的氧浓度来解释的死有机层的表面,这增加了不成对的价电子,导致未补偿的表面自旋。

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