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首页> 外文期刊>The Korean journal of chemical engineering >Optimization of synthesizing leucine-binding nano-sized magnetite bv a two-step transformation
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Optimization of synthesizing leucine-binding nano-sized magnetite bv a two-step transformation

机译:两步法合成亮氨酸结合型纳米磁铁矿的优化

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The optimum conditions for synthesizing leucine (Leu)-binding nano-sized magnetite (NSM) particles by a two-step transformation (TST) process were studied. The formation and magnetization of as-synthesized NSM particles were investigated through variation of the acidity, the type of surface modifier, and the nature of the acid for pH adjustment. With increased acidity, the saturation magnetization of the NSM particles decreased, but the amount of Leu coated on the surface of NSM particles increased. After the influence of hydroxyl (OH") groups on the surface of NSM particles was removed by using the dicarboxyl anion (C_2O_4~(2-)) as a ligand in the first step, Leu was successfully bound with NSM particles in the second step. However, when polyethylene glycol (PEG) was used as a surface modifier, it was difficult to form the Leu-to-NSM particle complex. In terms of the acid used to modify pH, H_2SO_4 was slightly less effective than HC1 in achieving saturation magnetization because the coordination for SO_4~(2-) anions is stronger than that of Cl~- anions. The preparation of other amino acid-binding NSM particles can be optimized in an analoaous manner.
机译:研究了通过两步转化(TST)法合成亮氨酸(Leu)结合纳米级磁铁矿(NSM)颗粒的最佳条件。通过改变酸度,表面改性剂的类型以及用于调节pH的酸的性质,研究了合成后的NSM颗粒的形成和磁化强度。随着酸度的增加,NSM颗粒的饱和磁化强度降低,但在NSM颗粒表面涂覆的Leu量增加。在第一步中,以二羧基阴离子(C_2O_4〜(2-))为配体去除了羟基(OH“)对NSM颗粒表面的影响后,在第二步中,Leu成功地与NSM颗粒结合但是,当使用聚乙二醇(PEG)作为表面改性剂时,难以形成Leu-NSM颗粒复合物,就用来改变pH值的酸而言,H_2SO_4在实现饱和方面比HC1稍差。因为SO_4〜(2-)阴离子的配位比Cl〜-的配位强,所以可以磁化,其他氨基酸结合的NSM粒子的制备可以通过水相优化。

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