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Effects of organic polymer addition in magnetite synthesis on its crystalline structure

机译:磁铁矿合成中添加有机聚合物对其晶体结构的影响

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摘要

Magnetite (Fe3O4) nanoparticles and magnetite-based inorganic–organic hybrids are attracting attention in biomedical fields as thermoseeds for hyperthermia and a contrast medium in magnetic resonance imaging. Size control of Fe3O4 thermoseeds is important as the particle size affects the heat generation properties. Fe3O4 can be easily synthesized via aqueous processes and the presence of organic substances during synthesis can affect the size and crystalline phase of the Fe3O4 formed. In this study, various polymers with different functional groups and surface charges were added to the precursor solution of Fe3O4 to clarify the relationship between the chemical structure of the organic substances and the crystal structure of Fe3O4. At first, coexistence effects of the organic substances in the solutions were clarified. As a result, crystalline Fe3O4 was precipitated even after addition of neutral polyethylene glycol and cationic poly(diallyldimethylammonium chloride). The poly(sodium-4-styrene sulfonate) addition significantly decreased the particle size, while polyacrylic acid addition inhibited Fe3O4 nucleation to afford an amorphous phase. These differences were related to the ease of complex formation from iron ions and coexisting organic polymers. In order to clarify this assumption, a modified experimental procedure was applied for the polyacrylic acid. Namely, the iron oxide precipitation by the NaOH solution was followed by the polyacrylic acid addition. Notably, Fe3O4 nucleation was not inhibited. Hence, the size and crystalline phase of the iron oxide prepared by the aqueous process were drastically affected by organic polymers.
机译:磁铁矿(Fe3O4)纳米颗粒和基于磁铁矿的无机-有机杂化物作为热疗的热种子和磁共振成像中的造影剂,在生物医学领域引起了人们的关注。 Fe3O4热种子的尺寸控制很重要,因为颗粒尺寸会影响发热特性。 Fe3O4可以很容易地通过水合过程合成,并且合成过程中有机物的存在会影响所形成的Fe3O4的尺寸和结晶相。在这项研究中,将具有不同官能团和表面电荷的各种聚合物添加到Fe3O4的前体溶液中,以阐明有机物质的化学结构与Fe3O4的晶体结构之间的关系。首先,阐明了溶液中有机物质的共存效应。结果,即使在添加中性聚乙二醇和阳离子聚(二烯丙基二甲基氯化铵)之后,结晶的Fe 3 O 4也会沉淀。聚(4-苯乙烯磺酸钠)的添加显着减小了粒径,而聚丙烯酸的添加抑制了Fe 3 O 4的成核,从而提供了非晶相。这些差异与铁离子和共存的有机聚合物形成络合物的难易程度有关。为了阐明这一假设,对聚丙烯酸采用了改进的实验程序。即,通过NaOH溶液沉淀氧化铁,然后添加聚丙烯酸。值得注意的是,Fe 3 O 4的成核没有受到抑制。因此,通过水法制备的氧化铁的尺寸和结晶相受有机聚合物的影响很大。

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