首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >A facile liquid foam based synthesis of nickel nanoparticles and their subsequent conversion to NicoreAgshell particles: structural characterization and investigation of magnetic properties
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A facile liquid foam based synthesis of nickel nanoparticles and their subsequent conversion to NicoreAgshell particles: structural characterization and investigation of magnetic properties

机译:镍基纳米粒子的轻质液体泡沫基合成及其随后的转化为NicoreAgshell粒子:结构表征和磁性能研究

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摘要

A facile route for the synthesis of nickel nanoparticles in stable aqueous foams is reported. The Ni nanoparticles were roughly 12 - 15 nm in size and were stable as aqueous suspensions or powders when oleic acid was used as a capping agent. These Ni nanoparticles were subsequently coated with a silver shell in view of the extra stability and the enhanced manipulative ability afforded by the silver nanocoating. This was accomplished by a simple transmetallation reaction wherein the nanoparticle surface nickel atoms act as localized reducing agents for the silver ions in solution. As the silver shell is formed through the surface reaction a reduction in the average size of the Ni-core occurs. After the core - shell structure formation, the Ni-core has an average diameter of 10 - 20 nm while the Ag-shell has a thickness of 2 - 4 nm. The pristine oleic acid coated Ni and NicoreAgshell nanoparticles were probed for their magnetic characteristics by a vibrating sample magnetometer. The nascent, oleic acid coated Ni nanoparticles display a low superparamagnetic blocking temperature, TB, of 20 K. The field dependent magnetic behaviour above and below T-B displays the standard features corresponding to superparamagnetism, as expected for very small Ni crystallites suggesting again that each 12 nm particle is polycrystalline. The magnetic contribution in the NicoreAgshell system comes from only the Ni core and predictably, the blocking temperature of this system is below 12 K due to the smaller size of the Ni core.
机译:据报道,在稳定的水性泡沫中合成镍纳米粒子的简便途径。 Ni纳米颗粒的尺寸约为12-15nm,并且当使用油酸作为封端剂时,其作为水性悬浮液或粉末是稳定的。考虑到银纳米涂层提供的额外稳定性和增强的操纵能力,随后将这些Ni纳米颗粒涂覆有银壳。这是通过简单的金属转移反应完成的,其中纳米粒子表面的镍原子充当溶液中银离子的局部还原剂。当通过表面反应形成银壳时,Ni核的平均尺寸减小。在形成核-壳结构之后,Ni-核的平均直径为10-20nm,而Ag-壳的厚度为2-4nm。通过振动样品磁力计探测了原始油酸包被的Ni和NicoreAgshell纳米颗粒的磁性。初生的油酸包覆的Ni纳米粒子显示出20 K的低超顺磁阻断温度TB。高于TB和低于TB的取决于磁场的磁行为显示了与超顺磁性相对应的标准特征,这是非常小的Ni晶体所期望的,再次表明每个12 nm颗粒是多晶的。 NicoreAgshell系统中的磁性贡献仅来自Ni核,并且可以预见,由于Ni核的尺寸较小,该系统的阻断温度低于12K。

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