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分散在聚合物衍生碳载体中的铁钴合金纳米颗粒:初始聚合物性质对尺寸、结构和磁性的影响。

Fe-Co Alloy Nanoparticles Dispersed in Polymer-Derived Carbon Support: Effect of Initial Polymer Nature on the Size, Structure and Magnetic Properties.

作者信息

Vasilev Andrey, Efimov Mikhail, Muratov Dmitry, Chernavskii Petr, Cherednichenko Kirill, Dzidziguri Ella, Karpacheva Galina

机构信息

A.V. Topchiev Institute of Petrochemical Synthesis RAS, Leninskiy Prospekt 29, Moscow 119991, Russia.

Department of Chemistry, Lomonosov Moscow State University, Leninskie Gory 1-3, Moscow 119991, Russia.

出版信息

Materials (Basel). 2023 Oct 14;16(20):6694. doi: 10.3390/ma16206694.

Abstract

Fe-Co alloy nanoparticles with different sizes, supported by carbon derived from several polymers, namely polyacrylonitrile, polyvinyl alcohol and chitosan, have been synthesized by a one-pot method involving simultaneous metal nanoparticle formation and polymer carbonization. The method involves the joint dissolution of metal salts and a polymer, followed by annealing of the resulting dried film. Detailed XRD analysis confirmed the formation of Fe-Co alloy nanoparticles in each sample, regardless of the initial polymer used. Transmission electron microscopy images showed that the Fe-Co nanoparticles were all spherical, were homogeneously distributed within the carbon support and varied by size depending on the initial polymer nature and synthesis temperature. Fe-Co nanoparticles supported by polyacrylonitrile-derived carbon exhibited the smallest size (6-12 nm), whereas nanoparticles on chitosan-derived carbon support were characterized by the largest particle size (13-38 nm). The size dependence of magnetic properties were studied by a vibrating sample magnetometer at room temperature. For the first time, the critical particle size of Fe-Co alloy nanoparticles with equiatomic composition has been experimentally determined as 13 nm, indicating the transition of magnetic properties from ferromagnetic to superparamagnetic.

摘要

通过一锅法合成了由几种聚合物(即聚丙烯腈、聚乙烯醇和壳聚糖)衍生的碳负载的不同尺寸的铁钴合金纳米颗粒,该方法涉及金属纳米颗粒的同时形成和聚合物碳化。该方法包括金属盐和聚合物的联合溶解,然后对所得干膜进行退火。详细的XRD分析证实了每个样品中都形成了铁钴合金纳米颗粒,无论使用何种初始聚合物。透射电子显微镜图像显示,铁钴纳米颗粒均为球形,均匀分布在碳载体中,并且根据初始聚合物的性质和合成温度,尺寸有所不同。由聚丙烯腈衍生的碳负载的铁钴纳米颗粒尺寸最小(6-12纳米),而壳聚糖衍生的碳载体上的纳米颗粒的特征是粒径最大(13-38纳米)。在室温下通过振动样品磁强计研究了磁性的尺寸依赖性。首次通过实验确定了等原子组成的铁钴合金纳米颗粒的临界粒径为13纳米,这表明磁性从铁磁性转变为超顺磁性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32a9/10608119/2cd28572836c/materials-16-06694-g001.jpg

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