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首页> 外文期刊>Journal of Colloid and Interface Science >Facile method for large scale synthesis of magnetic inorganic-organic hybrid anisotropic Janus particles
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Facile method for large scale synthesis of magnetic inorganic-organic hybrid anisotropic Janus particles

机译:磁性无机-有机杂化各向异性Janus粒子大规模合成的简便方法

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Anisotropic Janus particles with strong magnetic iron oxide domain and polymer microsphere domain were prepared with large scale in one batch through a facile method via the solvothermal method in the presence of poly(methylenebisacrylmide-co-methacrylic acid) (P(MBA-co-MAA)) microspheres. The coordination interaction between the carboxyl acid groups and inorganic species played an essential role during the formation of uniform P(MBA-co-MAA)/iron oxide core-shell microspheres via the controlled hydrolysis of ferric chloride in the initial stage. The formation of P(MBA-co-MAA)/Fe _3O _4 Janus particles may be originated from a thermodynamic incompatibility between the P(MBA-co-MAA) domain and the Fe _3O _4 domain during the partial reduction and crystallization of inorganic component to lower the interfacial energy change via reducing the interfacial area between the polymeric and inorganic magnetic domain. Further, the sizes of the inorganic magnetite domains were well controlled via altering the ratio of P(MBA-co-MAA) microspheres to ferric chloride inorganic precursors.
机译:在聚(亚甲基双丙烯酰胺-共-甲基丙烯酸)(P(MBA-co-MAA)存在下,通过溶剂热法,通过简便的方法分批大规模制备具有强磁性氧化铁畴和聚合物微球畴的各向异性Janus颗粒。 ))微球。在初始阶段,通过氯化铁的可控水解,在均匀的P(MBA-co-MAA)/氧化铁核-壳微球的形成过程中,羧基与无机物之间的配位相互作用起着至关重要的作用。 P(MBA-co-MAA)/ Fe _3O _4 Janus颗粒的形成可能是由于无机组分的部分还原和结晶过程中P(MBA-co-MAA)域与Fe _3O _4域之间的热力学不相容性引起的通过减小聚合物和无机磁畴之间的界面面积来降低界面能变化。此外,通过改变P(MBA-co-MAA)微球与氯化铁无机前体的比例,可以很好地控制无机磁铁矿域的大小。

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