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Morphological changes of magnetite clusters into rod-shaped magnetites with diamine molecules

机译:磁铁矿团簇形态转变为带二胺分子的棒状磁铁矿

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Citrate-capped magnetite clusters (C-Fe3O4) were prepared by adjusting the injection times of citrate ions during the co-precipitation process of a modified Massart's method. The resulting C-Fe3O4 was treated by bi-functional diamines with different chain lengths, consequently leading to the aggregation and/or morphological changes of magnetite clusters due to their molecular bridging effect. The longer chain length of diamines induced larger aggregation of C-Fe3O4 possibly due to the enhanced chain flexibility of diamine linkers. Diamine-linked C-Fe3O4 (D-Fe3O4) exhibited narrower size distribution and even morphological transformation into rod-shaped magnetites. The characteristic properties of magnetite clusters were analyzed by dynamic light scattering (DLS), scanning electron microscope (SEM), and Fourier transform infrared (FTIR).
机译:在改进的Massart方法的共沉淀过程中,通过调节柠檬酸根离子的注入时间,可以制备柠檬酸盐封端的磁铁矿簇(C-Fe 3 O 4 )。用具有不同链长的双功能二胺处理所得的C-Fe 3 O 4 ,因此由于磁铁矿团簇的聚集和/或形态变化而导致磁铁矿团簇的聚集和/或形态变化分子桥联效应。二胺更长的链长可能导致C-Fe 3 O 4 更大的聚集,这可能是由于二胺接头的链柔性增强所致。二胺连接的C-Fe 3 O 4 (D-Fe 3 O 4 )的粒径分布较窄,并且甚至从形态上转变成棒状磁铁矿。通过动态光散射(DLS),扫描电子显微镜(SEM)和傅立叶变换红外(FTIR)分析了磁铁矿团簇的特性。

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